Electric Drive Technologies for Future Electric Vehicles Professor Daniel Costinett The University of Tennessee

Size: px
Start display at page:

Download "Electric Drive Technologies for Future Electric Vehicles Professor Daniel Costinett The University of Tennessee"

Transcription

1 Electric Drive Technologies for Future Electric Vehicles Professor Daniel Costinett The University of Tennessee November 8 th, 2017 With contributions from Burak Ozpineci, ORNL, and Dragan Maksimovic, CU

2 Motivation WHY ELECTRIFY VEHICLES?

3 Transportation Electrification Motivation Improve efficiency: reduce energy consumption Displace petroleum as primary energy source Reduce impact on environment Reduce cost EIA: Transportation accounts for 28% of total U.S. energy use Transportation accounts for 33% of CO2 emissions Petroleum comprises 93% of US transportation energy use

4 Vehicle Kinematics

5 Propulsion power [kw] Vehicle speed [mph] Example: US06 driving cycle v [mph] v [mph] min 8 miles P v [kw] P v [kw] time [s] Time [s] time [s] Example: Prius-sized vehicle

6 Average power and energy 100 v [mph] Propulsion power [kw] Vehicle speed [mph] v [mph] Vehicle speed [mph] P v [kw] P v [kw] Propulsion power [kw] time [s] Time [s] time [s] Prius-sized vehicle Dissipative braking P vavg = 11.3 kw 235 Wh/mile Regenerative braking P vavg = 7.0 kw 146 Wh/mile

7 Gas Engine vs Electric Drive Max Efficiency 34% Max Efficiency > 95% Internal Combustion Engine (ICE) Electric Drive (ED) η ED,pk 95%; η ICE,pk 35% ED offers full torque at zero speed No need for multi-gear transmission

8 Conventional Vs. Electric Vehicle (Commuter Sedan comparison) Regenerative braking Tank to wheel efficiency Tank + Internal Combustion Engine NO 20% 1.2 kwh/mile, 28 mpg Electric Vehicle (EV) Battery + Inverter + AC machine YES 85% 0.17 kwh/mile, 200 mpg equiv. Cost 12 /mile [$3.50/gallon] 2 /mile [$0.12/kWh] CO 2 emissions (tailpipe, total) Energy Costs (10-yr, 15k mi/yr) 300, 350) g CO 2 /mile (0, 120) g CO 2 /mile [current U.S. electricity mix] $18,000 $3,000

9 Energy and Power Density of Storage Camaro 6.2L V8 Mazda RX-8 1.3L Wankel

10 Conventional Vs. Electric Vehicle (Commuter Sedan comparison) Tank + Internal Combustion Engine (Ford Focus ST) Electric Vehicle (EV) Battery + Inverter + AC machine (Ford Focus Electric) Purchase Price $24,495 $39,995 Significant Maintenance $5,000 (Major Engine Repair) $13,500 (Battery Pack Replacement) Range > 350 mi < 100 mi Curb Weight 3,000 lb 3,700 lb Energystorage Refueling Gasoline energy content 12.3 kwh/kg, 36.4 kwh/gallon 5 gallons/minute 11 MW, 140 miles/minute LiFePO 4 battery 0.1 kwh/kg, 0.8 kwh/gallon Level I (120Vac): 1.5 kw, <8 miles/hour Level II (240Vac): 6 kw, <32 miles/hour Level III (DC): 100 kw, <9 miles/minute

11 CO 2 emissions and oil displacement study Well-to-Wheel Analysis of Energy Use and Greenhouse Gas Emissions of PHEVs (2010 report by Argonne National Lab)

12 The Impact of Policy Peter Savagian, Barriers to the Electrification of the Automobile, Plenary session, ECCE 2014

13 EV Everywhere Grand Challenge Today $12/kW 1.2 kw/kg 3.5 kw/l >93% efficiency

14 Power Electronics Electrification of transportation is an enabling technology for safe, reliable, and environmental future Issues: Battery energy storage and charging times inadequate for consumer expectations 33% of total cost of an HEV is due to power electronics Weight and volume miniaturization required; Thermal management and packaging increase weight and require overdesign Materials (semiconductor, inductor, capacitor) materials not cost-effective Intelligent and comprehensive design of power electronics is necessary to continue development of electric vehicles.

15 Background ROLE OF POWER ELECTRONICS

16 Power Electronics in Electric Vehicles Peter Savagian, Barriers to the Electrification of the Automobile, Plenary session, ECCE 2014

17 EV Drive Train Battery PHEV (~320VDC) HEV(~259VDC) Up to 700 VDC, depending on driving conditions 3-ф AC to motor Low Voltage modules (4-60VDC)

18 Cooling Systems Audi Q5 Example Engine coolant in gasoline vehicles typically 105 C Silicon power electronics begin to break down at 125 C Separate, dedicated cooling loop for electrical systems SOA: 1kW to cool 4kW of power losses

19 Design of Power Electronics

20 Powertrain Components Battery Charger ( V DC) Bi-directional Converter Inverter 120 V AC/ 240V AC/ Fast Charger Torque to Drive Wheels

21 Example EV Power Electronics Module Component buildup of an EV Inverter built at ORNL

22 Substrate A ceramic piece sandwiched between two metal layers. Typically Direct Bonded Copper (DBC), Direct Bonded Aluminum (DBA) Function: Electrical conduction (horizontal plane) and insulation (vertical plane).

23 Power Device Chips The power device chips are soldered on the DBC. Function of Die Attach: Electrical connection and mechanical joints.

24 Interconnect Wire or Ribbon Bonds Typically aluminum or gold. Function: Electrical connection.

25 Baseplate (Base Metal) Typically copper or metal matrix composite (e.g. AlSiC). Function: Mechanical support and heat spreading.

26 Encapsulate Silicone Gel Function: Electrical insulation, mechanical protection (damps mechanical shock), and heat spreading.

27 Housing and Terminals The module is covered with a plastic package. The interconnects connect the power device chips to the copper terminal which protrudes from the package. Function: Mechanical protection and electrical connection.

28 Liquid Cooled Heatsink Typically, an aluminum liquid-cooled heatsink is used to cool inverters.

29 Power Modules The power modules are mounted on the heat sink with a thermal interface material (TIM) under the modules to increase the thermal conductivity. TIM is still responsible for around 40% of the thermal resistance from the junction to the ambient.

30 Gate Driver Boards The gate driver boards convert the computer signals into gate signals to switch the power devices on and off. The gate driver boards need to be as close to the power modules as possible to reduce the length of interconnections.

31 Sensors Current and voltage values are required as feedback for closed loop controllers to control torque (using current values) and speed (or flux using voltage values) of an electric machine.

32 Bus Bars Copper busbars are used for electrical connections between every power component of the inverter. For most inverters, bus bars must be designed to have minimum parasitic inductance.

33 Controller The controller boards are usually much more crowded than the one shown on the left and they include circuits for a microprocessor, typically a digital signal processor (DSP) analog and digital interfaces with the sensors and gate drivers

34 Capacitors Dc link capacitors are required in voltage source inverters (VSI). Capacitors generally occupy a third the volume of an inverter and weigh as much. They cost 15-20% of the inverter. In a VSI, they filter the dc link current and keep the dc link voltage constant. A current source inverter (CSI) would have an inductor instead of the dc link capacitor. The inverter shown on the left has significantly lower dc link capacitor requirements.

35 ORNL-built Segmented Inverter with Reduced Capacitance The advantage of this inverter is 60% reduction dc-link capacitor

36 Research HOW WE CAN IMPROVE POWER ELECTRONICS

37 Power Electronics for Electric Drives State of the Art (SOA): No WBG inverters commercially available Problems associated with power electronics for advanced vehicle applications include: Low efficiency at light load conditions for inverters and converters Low current density and device scaling issues for high power converters Lack of reliable higher junction temperature devices High cost of devices and power modules especially for WBG and advanced silicon devices Low power density for the low voltage electronics and cost of interconnects Lack of adequate protection for the devices High cost for low loss magnetics and high temperature films for capacitors

38 Research Areas Reduce size and weight of the inverters to meet the 2022 targets of 13.4 kw/l and 14.1 kw/kg WBG technology Increase the overall efficiency of the traction drive system Reduce the size of the passives with high frequency operation Reduced thermal requirements with high temperature operation Integrated topologies and passives Reduce cost and volume of the passives Integrate more functionality and reduce cost through component count Control algorithms and novel circuits Increase the safe operating area of the WBG devices using advanced gate driver circuits Increase the reliability of the system using protection circuits Design algorithms to optimize efficiency for light load conditions Novel system packaging and advanced manufacturing techniques Minimize parasitics and increase heat transfer using advanced packaging Reduce cost through novel interconnects Reduce cost through process optimization

39 Functional Integration Battery Charger ( V DC) Bi-directional Converter Inverter 120 V AC/ 240V AC/ Fast Charger Torque to Drive Wheels

40 Functional Integration Battery Charger ( V DC) Bi-directional Converter Inverter 120 V AC/ 240V AC/ Fast Charger Torque to Drive Wheels

41 Functional Integration Battery Charger ( V DC) Bi-directional Converter Inverter 120 V AC/ 240V AC/ Fast Charger Torque to Drive Wheels

42 Example #1 BIDIRECTIONAL DC-DC CONVERTER

43 Drivetrain DC-DC Converter Oak Ridge National Lab, Benchmarking of Competitive Technologies η = 86% Battery Electric Drive η = 92% Bidirectional DC-DC Converter A DC-DC converter to boost battery voltage is included in many EVs Allows higher efficiency operation of ED Wider operating range Lower pack voltage V dc = 650 V

44 Drivetrain DC-DC Converter Oak Ridge National Lab, Benchmarking of Competitive Technologies η = 86% 88% Battery Electric Drive η = 92% 94% Bidirectional DC-DC Converter A DC-DC converter to boost battery voltage is included in many EVs Allows higher efficiency operation of ED Wider operating range Lower pack voltage V dc = 650 V V dc = 500 V

45 Drivetrain DC-DC Converter Oak Ridge National Lab, Benchmarking of Competitive Technologies η = 86% 88% 93% Battery Electric Drive η = 92% 94% Bidirectional DC-DC Converter A DC-DC converter to boost battery voltage is included in many EVs Allows higher efficiency operation of ED Wider operating range Lower pack voltage V dc = 650 V V dc = 500 V V dc = 225 V

46 Optimal Bus Voltage Bus voltage for maximum efficiency of electric drive varies with speed and torque Maximum ED efficiency only obtained when power electronics vary bus voltage dynamically Often, only high power operating points are considered in design, but under normal driving conditions, ED operates predominately at low power US06 driving cycle v [mph]

47 Integrated DC/DC and Charger Designed combined drivetrain DC-DC and isolated battery charger Converter designed for high energy efficiency during normal drive cycles Highly efficient, low power isolation converter used as drivetrain converter at low power Traditional 2-stage drivetrain topology Charger Mode DC/DC Mode Combined isolated/non-isolated topology Prototype Measured Efficiency

48 Reducing Cooling Partnered with ORNL to integrate and test immersion cooled SiC power module SiC gate driver tested to 300 C 3D printed aluminum endcaps function as electrical, mechanical, and thermal components Complete 50 kw phase leg assembly

49 Example #2 BATTERY MANAGEMENT SYSTEM

50 Battery Management System Battery Management System EV battery consists of many (100 s) series battery cells (LFP, Li-ion, NiMH) Cells share a charging and discharging current, but may have mismatches in series resistance, capacity, operating temperature, health, or dynamics Cells binned by manufacturer to limit mismatch at beginning-of-life

51 Cell Balancing SOC max SOC min + V pack Small differences in cell characteristics are exacerbated over multiple charge and discharge cycles due to their series connection

52 Cell Balancing SOC max SOC min + V pack Discharge is limited by the first cell to reach the minimum allowable State-of- Charge (SOC).

53 Cell Balancing SOC max Inaccessible Capacity SOC min + V pack Discharge is limited by the first cell to reach the minimum allowable State-of- Charge (SOC). Effective pack capacity limited to the capacity of the lowest cell (in Amp-hours)

54 Cell Balancing SOC max Uncharged Capacity SOC min + V pack When recharged, charging is stopped when the first cell reaches maximum capacity, leading to incomplete charging of some cells and lower total pack capacity

55 Passive (Dissipative) Balancing SOC max SOC min + V pack Option 1: Dissipate, then recharge Repeat a number of cycles to balance all cells at full charge

56 Active Balancing SOC max SOC min + V pack Option 2: Redistribute Requires more advanced circuits Can be run continuously, during runtime

57 Incorporation of Functionality Combining the necessary HV-to-LV converter with balancing converters allows Effective (differential) efficiency of 100% Nearly zero effective cost R. Zane, M. Evzelman, D. Costinett, D. Maksimovic, R. Anderson, K. Smith, M. S. Trimboli, and G. Plett, Battery control, U.S. Patent 14/591,917, 2012.

58 Future Work WHERE POWER ELECTRONICS WILL TAKE US

59 Vehicle-Grid Interactions SAE Ground Vehicle Standards SmartGrid EV batteries used as energy storage for grid Intermittency mitigation coupled to renewables Load shifting Power compensation

60 Wireless Charging Wireless charging opportunity: Provides convenience to the customer. Plug-in and battery electric vehicles (PEVs) can be charged conveniently and safely without need for cable and plug. With WPT the charging process can be fully autonomous. Reduce on-board ESS size using dynamic on-road charging.

61 Wireless Charging Stationary Charging Opportunity/Quasi-Dynamic Charging In-motion/Dynamic Charging

62 Wireless Charging Stationary Charging Chevy Equinox and Toyota Prius Conversion Plugin In-motion/Dynamic Charging GEM Vehicle

63 World s First 3D Printed Car Makes Debut Layer by layer, inch my inch, the world's first 3-D printed vehicle seemingly emerged from thin air during the 2014 International Manufacturing Technology Show. In a matter of two days, history was made at Chicago's McCormick Place, as the world's first 3-D printed electric car -- named Strati, Italian for "layers"-- took its first test drive. September 2014

64 ORNL 3D-Printed Electric Shelby Cobra

65 3D Printed Liquid-Cooled 80 kw Inverter 80kW ORNL COMPACT Inverter Nissan LEAF Inverter (80kW)

66 Conclusions Power Electronics play a critical role in the future adoption of electric vehicles The Power Electronics engineer must holistically consider in-system performance, not solely efficiency in isolation Future technologies including wireless power transfer and 3D printing can revolutionize the industry

67 QUESTIONS: MK502 curent.utk.edu potenntial.eecs.utk.edu ornl.gov

Power Electronic Circuits

Power Electronic Circuits Power Electronic Circuits Prof. Daniel Costinett ECE 482 Lecture 1 January 8, 2015 New course in design an implementation of power converters Course website: http://web.eecs.utk.edu/courses/spring2015/ece482/

More information

Transportation Electrification

Transportation Electrification Power Electronics Circuits Prof. Daniel Costinett ECE 482 Lecture 1 January 12, 2017 Transportation Electrification Motivation Improve efficiency: reduce energy consumption Displace petroleum as primary

More information

Power Electronics for Electric Drive Vehicles. Fall 2013

Power Electronics for Electric Drive Vehicles. Fall 2013 Power Electronics for Electric Drive Vehicles Fall 2013 1 Course Offered Jointly Co developed and maintained by multiple universities USU: Prof. Regan Zane (lead for 2013) CU Boulder: Prof. Dragan Maksimovic

More information

YSP Power Electronics Overview. Prof. Daniel Costinett June 10, 2014

YSP Power Electronics Overview. Prof. Daniel Costinett June 10, 2014 YSP Power Electronics Overview Prof. Daniel Costinett June 10, 2014 Voltage Levels 1V 10V 100V 10kV 1MV The War of the Currents DC + Low-loss transmission + Asynchronous + Used by electronics, batteries,

More information

Electric Drive Technologies Roadmap Update

Electric Drive Technologies Roadmap Update Electric Drive Technologies Roadmap Update Burak Ozpineci Greg Smith Oak Ridge National Laboratory burak@ornl.gov @burakozpineci ORNL is managed by UT-Battelle for the US Department of Energy Oak Ridge

More information

Building Blocks and Opportunities for Power Electronics Integration

Building Blocks and Opportunities for Power Electronics Integration Building Blocks and Opportunities for Power Electronics Integration Ralph S. Taylor APEC 2011 March 8, 2011 What's Driving Automotive Power Electronics? Across the globe, vehicle manufacturers are committing

More information

Power Electronics Roadmap. Updated by the Advanced Propulsion Centre in collaboration with and on behalf of the Automotive Council

Power Electronics Roadmap. Updated by the Advanced Propulsion Centre in collaboration with and on behalf of the Automotive Council Power Electronics Roadmap Updated by the Advanced Propulsion Centre in collaboration with and on behalf of the Automotive Council Executive summary: Power electronics The 2013 roadmap was developed alongside

More information

Electric cars: Technology

Electric cars: Technology In his lecture, Professor Pavol Bauer explains all about how power is converted between the various power sources and power consumers in an electric vehicle. This is done using power electronic converters.

More information

VEHICLE ELECTRICAL SYSTEMS INTEGRATION (VESI) PROJECT

VEHICLE ELECTRICAL SYSTEMS INTEGRATION (VESI) PROJECT EP/I038543/1 VEHICLE ELECTRICAL SYSTEMS INTEGRATION (VESI) PROJECT Phil Mawby University of Warwick 2 Facts & Figures EPSRC-funded project: 3.8 M Low TRL (1-3) to support EV technology development 10 partners

More information

Next-Generation Power Electronics Technology with Vehicle Electrification

Next-Generation Power Electronics Technology with Vehicle Electrification Next-Generation Power Electronics Technology with Vehicle Electrification Kevin (Hua) Bai, Ph.D Associate Professor Robert Bosch Endowed Professorship Department of Electrical and Computer Engineering

More information

EV/HEV Automotive Power Modules: Innovations and trends

EV/HEV Automotive Power Modules: Innovations and trends EV/HEV Automotive Power Modules: Innovations and trends Elena Barbarini, Phd IMAPS 2018, 8th November 22 Bd Benoni Goullin 44200 NANTES - FRANCE +33 2 40 18 09 16 info@systemplus.fr www.systemplus.fr 2018

More information

Devices and their Packaging Technology

Devices and their Packaging Technology 4 th Workshop Future of Electronic Power Processing and Conversion Devices and their Packaging Technology May 2001 Werner Tursky SEMIKRON ELEKTRONIK GmbH Nuremberg, Germany 1 1. Devices 2. From Discrete

More information

The Case for Plug-In Hybrid Electric Vehicles. Professor Jerome Meisel

The Case for Plug-In Hybrid Electric Vehicles. Professor Jerome Meisel The Case for Plug-In Hybrid Electric Vehicles Professor Jerome Meisel School of Electrical Engineering Georgia Institute of Technology jmeisel@ee.gatech.edu PSEC Tele-seminar: Dec. 4, 2007 Dec. 4, 2007

More information

CooliR 2 - New Power Module Platform for HEV and EV Traction Inverters.

CooliR 2 - New Power Module Platform for HEV and EV Traction Inverters. CooliR 2 - New Power Module Platform for HEV and EV Traction Inverters. Jack Marcinkowski Abstract The paper introduces an innovative CooliR 2 high power semiconductor packaging platform from International

More information

All-SiC Module for Mega-Solar Power Conditioner

All-SiC Module for Mega-Solar Power Conditioner All-SiC Module for Mega-Solar Power Conditioner NASHIDA, Norihiro * NAKAMURA, Hideyo * IWAMOTO, Susumu A B S T R A C T An all-sic module for mega-solar power conditioners has been developed. The structure

More information

and Electric Vehicles ECEN 2060

and Electric Vehicles ECEN 2060 Hybrid Electric Vehicles and Electric Vehicles ECEN 26 Vehicle Dynamics F F d F r F a F g 1 d A 2 C 2 f rr M g cos M d dt M g sin Force [N] = traction effort to accelerate (F a ) and to oercome aerodynamic

More information

Visions for Power Electronics in Automotive Applications

Visions for Power Electronics in Automotive Applications Visions for Power Electronics in Automotive Applications Fraunhofer-Institut für Integrierte Systeme und Bauelementetechnologie, Schottkystrasse 10 91058 Erlangen Tel. 09131/761-139, Fax -312 www.iisb.fraunhofer.de

More information

Automotive Power Electronics Roadmap

Automotive Power Electronics Roadmap Automotive Power Electronics Roadmap J. W. Kolar, ETH Zurich, Switzerland, M. März, Fraunhofer IISB, Germany, and E. Wolfgang, Germany Summary authored by S. D. Round, ETH Zurich, Switzerland Automotive

More information

WBG Power Electronics Traineeship

WBG Power Electronics Traineeship WBG Power Electronics Traineeship Leon M. Tolbert, Fred Wang, Daniel J. Costinett, Benjamin J. Blalock, and Zheyu Zhang Madhu Chinthavali, Burak Ozpineci, Zhenxian Liang, Zhiqiang Wang April 1, 2016 Knoxville,

More information

The path to electrification. April 11, 2018

The path to electrification. April 11, 2018 The path to electrification April 11, 2018 Forward-looking Statements This presentation, as well as other statements made by Delphi Technologies PLC (the Company ), contain forward-looking statements that

More information

Energy Storage Systems Discussion

Energy Storage Systems Discussion Annual Meeting and Technology Showcase Logan, Utah September 27-28, 2016 Energy Storage Systems Discussion SELECT Energy Storage Systems Lead Dr. Gregory L. Plett (UCCS) Energy Storage Systems The battery

More information

Electric cars: Technology

Electric cars: Technology Alternating current (AC) Type of electric current which periodically switches its direction of flow. Ampere (A) It is the SI unit of electric current, which is equivalent to flow of 1 Coulumb electric

More information

PHEV: HEV with a larger battery to allow EV operation over a distance ( all electric range AER)

PHEV: HEV with a larger battery to allow EV operation over a distance ( all electric range AER) ECEN507 Lecture 0: HEV & Series HEV HEVs and PHEVs HEV: combination of a gasoline powered internal combustion engine (ICE) or an alternative power (e.g. fuel cell) electric drives: electric machines and

More information

Ph: October 27, 2017

Ph: October 27, 2017 To: The NJ Board of Public Utilities Att: NJ Electric Vehicle Infrastructure - Stakeholder Group From: Dr. Victor Lawrence, Dr. Dan Udovic, P.E. Center for Intelligent Networked Systems (INETS) Energy,

More information

INVENTION DISCLOSURE MECHANICAL SUBJECT MATTER EFFICIENCY ENHANCEMENT OF A NEW TWO-MOTOR HYBRID SYSTEM

INVENTION DISCLOSURE MECHANICAL SUBJECT MATTER EFFICIENCY ENHANCEMENT OF A NEW TWO-MOTOR HYBRID SYSTEM INVENTION DISCLOSURE MECHANICAL SUBJECT MATTER EFFICIENCY ENHANCEMENT OF A NEW TWO-MOTOR HYBRID SYSTEM ABSTRACT: A new two-motor hybrid system is developed to maximize powertrain efficiency. Efficiency

More information

EV 2.0 SOLUTION DESIGN PRESENTATION GOODNESS FOWORA IKENNA ONYENZE ARINZE UDEH OLANIYI NAFIU. Advisor: Dr. Emmanuel Glakpe (ME)

EV 2.0 SOLUTION DESIGN PRESENTATION GOODNESS FOWORA IKENNA ONYENZE ARINZE UDEH OLANIYI NAFIU. Advisor: Dr. Emmanuel Glakpe (ME) EV 2.0 SOLUTION DESIGN PRESENTATION GOODNESS FOWORA IKENNA ONYENZE ARINZE UDEH OLANIYI NAFIU Advisor: Dr. Emmanuel Glakpe (ME) BACKGROUND The EV1 was produced by General motors from 1996-1999 Fully electric

More information

ECEN5017 Lecture 10: HEV & Series HEV. HEVs and PHEVs

ECEN5017 Lecture 10: HEV & Series HEV. HEVs and PHEVs HEV: combination of ECEN507 Lecture 0: HEV & Series HEV HEVs and PHEVs a gasoline powered internal combustion engine (ICE) or an alternative power (e.g. fuel cell) electric drives: electric machines and

More information

2011 Advanced Energy Conference -Buffalo, NY

2011 Advanced Energy Conference -Buffalo, NY 2011 Advanced Energy Conference -Buffalo, NY Electrification Technology and the Future of the Automobile Mark Mathias Electrochemical Energy Research Lab General Motors R&D Oct. 13, 2011 Transitioning

More information

Comparing the powertrain energy and power densities of electric and gasoline vehicles

Comparing the powertrain energy and power densities of electric and gasoline vehicles Comparing the powertrain energy and power densities of electric and gasoline vehicles RAM VIJAYAGOPAL Argonne National Laboratory 20 July 2016 Ann Arbor, MI Overview Introduction Comparing energy density

More information

Chris Pick. Ford Motor Company. Vehicle Electrification Technologies and Industry Approaches

Chris Pick. Ford Motor Company. Vehicle Electrification Technologies and Industry Approaches Chris Pick Manager, Global Electrification Business Strategy Ford Motor Company Vehicle Electrification Technologies and Industry Approaches Agenda Drivers for Electrification and Technology Background

More information

JEE4360 Energy Alternatives

JEE4360 Energy Alternatives JEE4360 Energy Alternatives Transportation Assignment Due Quiz / Project Presentation Transportation 1 Why Transportation Energy Along with electricity, the other big target 27% of total USA energy consumption

More information

2010 Advanced Energy Conference. Electrification Technology and the Future of the Automobile. Mark Mathias

2010 Advanced Energy Conference. Electrification Technology and the Future of the Automobile. Mark Mathias 2010 Advanced Energy Conference Electrification Technology and the Future of the Automobile Mark Mathias Electrochemical Energy Research Lab General Motors R&D New York, NY Nov. 8, 2010 Transitioning From

More information

WIRELESS CHARGING FOR THE OFF ROAD INDUSTRY

WIRELESS CHARGING FOR THE OFF ROAD INDUSTRY WIRELESS CHARGING FOR THE OFF ROAD INDUSTRY 1 The Materials Handling Industry Background 1. Building Electric Vehicles since 1932 2. Until recently this industry was the largest Electric vehicle manufacturer

More information

POWER ELECTRONICS AND SYSTEM TECHNOLOGIES FOR ENERGY SUPPLY

POWER ELECTRONICS AND SYSTEM TECHNOLOGIES FOR ENERGY SUPPLY POWER ELECTRONICS AND SYSTEM TECHNOLOGIES FOR ENERGY SUPPLY Prof. Dr. Lothar Frey, Fraunhofer IISB SEMICON Europa, TechARENA, Dresden, October 7, 2015 A Strategic Core Competence of the Fraunhofer Group

More information

Real Driving Emission and Fuel Consumption (for plug-in hybrids)

Real Driving Emission and Fuel Consumption (for plug-in hybrids) Real Driving Emission and Fuel Consumption (for plug-in hybrids) A3PS Eco-Mobility 2016 Vienna, October 17-18, 2016 Henning Lohse-Busch, Ph.D. hlb@anl.gov Argonne National Laboratory Argonne s Advanced

More information

ECPE 24/11/2011 : Power Electronics Research in Europe

ECPE 24/11/2011 : Power Electronics Research in Europe Regis Meuret SAFRAN Hispano-Suiza ECPE 24/11/2011 : Power Electronics Research in Europe ECPE 24/11/2011 1 AGENDA INTRODUCTION: CREAM context POWER ELECTRONIC OBJECTIVES IN CREAM CREAM IN THE HT SAFRAN

More information

EV1 RETROSPECTIVE AND THE ELECTRIC VEHICLE REVOLUTION ROBERT DAWSEY VICE PRESIDENT, ENGINEERING AND OPERATIONS FLEX POWER CONTROL INC.

EV1 RETROSPECTIVE AND THE ELECTRIC VEHICLE REVOLUTION ROBERT DAWSEY VICE PRESIDENT, ENGINEERING AND OPERATIONS FLEX POWER CONTROL INC. EV1 RETROSPECTIVE AND THE ELECTRIC VEHICLE REVOLUTION ROBERT DAWSEY VICE PRESIDENT, ENGINEERING AND OPERATIONS FLEX POWER CONTROL INC. Bio 32 years working for GM (including 5 for Hughes Aircraft Company)

More information

Overview of Power Electronics for Hybrid Vehicles

Overview of Power Electronics for Hybrid Vehicles Overview of Power Electronics for Hybrid Vehicles P. T. Krein Grainger Center for Electric Machinery and Electromechanics Department of Electrical and Computer Engineering University of Illinois at Urbana-Champaign

More information

Plug-in Hybrid Vehicles

Plug-in Hybrid Vehicles Plug-in Hybrid Vehicles Bob Graham Electric Power Research Institute Download EPRI Journal www.epri.com 1 Plug-in Hybrid Vehicles Attracting Attention at the Nation s Highest Level President Bush February

More information

POWERTRAIN SOLUTIONS FOR ELECTRIFIED TRUCKS AND BUSES

POWERTRAIN SOLUTIONS FOR ELECTRIFIED TRUCKS AND BUSES POWERTRAIN SOLUTIONS FOR ELECTRIFIED TRUCKS AND BUSES PDiM 2017 (Heimo Schreier) Burak Aliefendioglu Fredrik Haag AVL H. Schreier, B Aliefendioglu, F. Haag PDIM 2017 30 November 2017 1 TRUCK & BUS ELECTRIFICATION

More information

Power Electronics and Electric Drives

Power Electronics and Electric Drives Annual Meeting and Technology Showcase Logan, Utah September 27-28, 2016 Power Electronics and Electric Drives Professor of ECE, Purdue University Dr. Steve Pekarek Power Electronics and Electric Drives

More information

TENSION 12 V TO 800 V EFFICIENT POWERTRAIN SOLUTIONS

TENSION 12 V TO 800 V EFFICIENT POWERTRAIN SOLUTIONS TENSION 12 V TO 800 V EFFICIENT POWERTRAIN SOLUTIONS FISITA 2015 K. Küpper, T. Pels, M. Deiml, A. Angermaier, T. Bürger, A. Weinzerl, G. Teuschl AVL List GmbH Public CHANGE OF BOUNDARIES POWERTRAIN ELECTRIFICATION

More information

E-DRIVE: HIGHLY INTEGRATED AND HIGH EFFICIENT

E-DRIVE: HIGHLY INTEGRATED AND HIGH EFFICIENT E-DRIVE: HIGHLY INTEGRATED AND HIGH EFFICIENT Korea EV Engineering & Testing Exhibition Roger Perthen AVL List GmbH (Headquarters) KEY ASPECTS FOR BATTERY ELECTRIC VEHICLES (BEVs) E-DRIVE: AFFORDABLE -

More information

Conclusions. Fall 2010

Conclusions. Fall 2010 Conclusions ECEN 2060 Fall 2010 ECEN 2060 Topics Introduction to electric power system Photovoltaic (PV) power systems Energy efficient lighting Wind power systems Hybrid and electric vehicles 2 Electric

More information

Inverter with MPPT and Suppressed Leakage Current

Inverter with MPPT and Suppressed Leakage Current POWER ELECTRONICS IEEE Projects Titles -2018 LeMeniz Infotech 36, 100 feet Road, Natesan Nagar(Near Indira Gandhi Statue and Next to Fish-O-Fish), Pondicherry-605 005 Web : www.ieeemaster.com / www.lemenizinfotech.com

More information

From Discrete IGBT Modules to Power Stacks

From Discrete IGBT Modules to Power Stacks From Discrete IGBT Modules to Power Stacks APEC 2015 March 19 th 2015 Charlotte, NC SEMIKRON Inc. G. Genet P. Drexhage K. Haddad Slide - 1 - What is a power stack? 1. Heatsink 2. Thermal Interface Material

More information

Gallium Nitride Power Transistors in the EV World. June 2017

Gallium Nitride Power Transistors in the EV World. June 2017 Gallium Nitride Power Transistors in the EV World June 2017 1 GaN Systems - Industry leading GaN transistor supplier True Enhancement-Mode, Normally Off Supports Fsw up to 100MHz Industry s highest current

More information

Electric Vehicles: Updates and Industry Momentum. CPES Meeting Watson Collins March 17, 2014

Electric Vehicles: Updates and Industry Momentum. CPES Meeting Watson Collins March 17, 2014 Electric Vehicles: Updates and Industry Momentum CPES Meeting Watson Collins March 17, 2014 1 1 Northeast Utilities launched an EV Tech Center to answer questions and help EV drivers get connected www.plugmyride.org

More information

Electrification of Transportation and the Impacts on the Electric Grid

Electrification of Transportation and the Impacts on the Electric Grid Electrification of Transportation and the Impacts on the Electric Grid Clean Energy Speaker Series Tom King Oak Ridge National Laboratory April 27 th, 2011 Total energy production and use increasing nationally

More information

Challenging Questions for Power Electronics Engineers/Researchers in Vehicle Electrification

Challenging Questions for Power Electronics Engineers/Researchers in Vehicle Electrification Challenging Questions for Power Electronics Engineers/Researchers in Vehicle Electrification APEC 2015 Industry Session Jun Kikuchi Ford Motor Company Research and Innovation Center Ford Model T 1908 www.thehenryford.org

More information

SiC and GaN adoption by EV/HEV market

SiC and GaN adoption by EV/HEV market From Technologies to Market SiC and GaN adoption by EV/HEV market Hong LIN, PhD Senior Analyst lin@yole.fr CS International 2019 YOLE DEVELOPPEMENT Software Photonics Imaging MEMS & Sensors RF Devices

More information

Challenges on the Road to Electrification of Vehicles. Hrishikesh Sathawane Analyst Lux Research, Inc. October, 2011

Challenges on the Road to Electrification of Vehicles. Hrishikesh Sathawane Analyst Lux Research, Inc. October, 2011 Challenges on the Road to Electrification of Vehicles Hrishikesh Sathawane Analyst Lux Research, Inc. October, 2011 Lux Research Helps clients capitalize on science-driven innovation, identifying new business

More information

Electrified Transportation Challenges

Electrified Transportation Challenges Electrified Transportation Challenges Shahram Zarei Electrified Powertrain Engineering Ford Motor Co. An Industry Session APEC 2017 SLIDE 1 Introduction SLIDE 2 At the end of the 19 th century, big cities

More information

Advanced Soft Switching for High Temperature Inverters

Advanced Soft Switching for High Temperature Inverters Advanced Soft Switching for High Temperature Inverters Plenary Presentation at The 5th IEEE Vehicle Power and Propulsion Conference (VPPC'9) Jih-Sheng (Jason) Lai, Professor Virginia Polytechnic Institute

More information

Future Lithium Demand in Electrified Vehicles. Ted J. Miller

Future Lithium Demand in Electrified Vehicles. Ted J. Miller Future Lithium Demand in Electrified Vehicles Ted J. Miller August 5, 2010 Outline Vehicle Electrification at Ford Advanced Battery Technology Lithium Batteries Electrified Vehicle Market Forecasts Key

More information

Energy 101 Energy Technology and Policy

Energy 101 Energy Technology and Policy Energy 101 Energy Technology and Policy Dr. Michael E. Webber The University of Texas at Austin Module 23: Transportation II -- Advanced Fuels and Drivetrains 1 There are Several Novel Fuels and Drivetrains

More information

Power through Innovation. UK and China Joint R&D & Wide Band Gap Semiconductors: UK operating in global market. Yangang Wang

Power through Innovation. UK and China Joint R&D & Wide Band Gap Semiconductors: UK operating in global market. Yangang Wang Power through Innovation UK and China Joint R&D & Wide Band Gap Semiconductors: UK operating in global market Yangang Wang Company Profile CRRC is a world leading rail transportation equipment manufacturer

More information

DOE OVT Energy Storage R&D Overview

DOE OVT Energy Storage R&D Overview DOE OVT Energy Storage R&D Overview David Howell Hybrid and electric vehicles, energy storage technologies and control systems National and international R&D-projects, research institutions and funding

More information

Efficiency Enhancement of a New Two-Motor Hybrid System

Efficiency Enhancement of a New Two-Motor Hybrid System World Electric Vehicle Journal Vol. 6 - ISSN 2032-6653 - 2013 WEVA Page Page 0325 EVS27 Barcelona, Spain, November 17-20, 2013 Efficiency Enhancement of a New Two-Motor Hybrid System Naritomo Higuchi,

More information

DC Arc-Free Circuit Breaker for Utility-Grid Battery Storage System

DC Arc-Free Circuit Breaker for Utility-Grid Battery Storage System DC Arc-Free Circuit Breaker for Utility-Grid Battery Storage System Public Project Report Project RENE-005 University of Toronto 10 King s College Rd. Toronto, ON 2016 Shunt Current Mes. IGBTs MOV Short

More information

Inverter Market Trends and Major Technology Changes

Inverter Market Trends and Major Technology Changes Inverter Market Trends 2013-2020 and Major Technology Changes February 2013 A big dive into the heart of the power electronics industry, from systems to active & passive components REPORT SAMPLE Delphi

More information

The BEEST: An Overview of ARPA-E s Program in Ultra-High Energy Batteries for Electrified Vehicles

The BEEST: An Overview of ARPA-E s Program in Ultra-High Energy Batteries for Electrified Vehicles The BEEST: An Overview of ARPA-E s Program in Ultra-High Energy Batteries for Electrified Vehicles David Danielson, PhD Program Director, ARPA-E NDIA Workshop to Catalyze Adoption of Next-Generation Energy

More information

Vehicle Electrical Systems Integration

Vehicle Electrical Systems Integration Vehicle Electrical Systems Integration Aim: Reduce cost, size and improve reliability of the electrical power systems by integration of functionality in Automotive applications Low TRL level to support

More information

POWER ELECTRONICS & DRIVES

POWER ELECTRONICS & DRIVES POWER ELECTRONICS & DRIVES S.No Title Year Solar Energy/PV Grid-Tied 01 Nonlinear PWM-Controlled Single-Phase Boost Mode Grid-Connected Photovoltaic Inverter With Limited Storage Inductance Current 02

More information

Smart Transportation:

Smart Transportation: by Laura Schewel and Daniel M. Kammen Smart Transportation: Synergizing Electrified Vehicles and Mobile Information Systems Plug-in vehicles include both fully electric vehicles, such as the Tesla Roadster

More information

Electric Vehicles House Select Committee on Energy Independence & Alternative Fuels Anne Tazewell Transportation Program Manager December 7, 2011

Electric Vehicles House Select Committee on Energy Independence & Alternative Fuels Anne Tazewell Transportation Program Manager December 7, 2011 Electric Vehicles House Select Committee on Energy Independence & Alternative Fuels Anne Tazewell Transportation Program Manager December 7, 2011 NC Solar Center Part of the College of Engineering at NC

More information

Batteries and Electrification R&D

Batteries and Electrification R&D Batteries and Electrification R&D Steven Boyd, Program Manager Vehicle Technologies Office Mobility is a Large Part of the U.S. Energy Economy 11 Billion Tons of Goods 70% of petroleum used for transportation.

More information

PROGRESS OF BATTERY SYSTEMS AT GENERAL MOTORS. Manfred Herrmann Roland Matthé. World Mobility Summit Munich October 2016

PROGRESS OF BATTERY SYSTEMS AT GENERAL MOTORS. Manfred Herrmann Roland Matthé. World Mobility Summit Munich October 2016 PROGRESS OF BATTERY SYSTEMS AT GENERAL MOTORS Manfred Herrmann Roland Matthé World Mobility Summit Munich October 2016 AGENDA DEVELOPMENT OF ELECTRIFICATION ELECTRIFICATION BATTERY SYSTEMS PROGRESS OF

More information

EPE 18 ECCE Europe: LIST OF KEYWORDS

EPE 18 ECCE Europe: LIST OF KEYWORDS EPE 18 ECCE Europe: LIST OF KEYWORDS AC machine AC-cable AC/AC converter Accelerators Acoustic noise Active damping Active filter Active Front-End Actuator Adaptive control Adjustable speed drive Adjustable

More information

Vehicle Impact due to E- Mobility 5. Bayerischer Innovationskongress 23.June 2016 Techbase

Vehicle Impact due to E- Mobility 5. Bayerischer Innovationskongress 23.June 2016 Techbase Vehicle Impact due to E- Mobility 5. Bayerischer Innovationskongress 23.June 2016 Techbase Matthias Töns www.continental-automotive.com Division Powertrain BU Hybrid Electric Vehicle Agenda 1 Business

More information

New Inverter Layout and DC Link Capacitor Integration for Increased System Density and Performance

New Inverter Layout and DC Link Capacitor Integration for Increased System Density and Performance New Inverter Layout and DC Link Capacitor Integration for Increased System Density and Performance Author: Ed Sawyer SBE Inc. Presenter: Ed Sawyer, President & CEO, SBE Inc. IECON 2008 Orlando, FL Who

More information

Rich, unique history of engineering, manufacturing and distributing

Rich, unique history of engineering, manufacturing and distributing Rich, unique history of engineering, manufacturing and distributing United Silicon Carbide, inc. is a semiconductor company specializing in the development of high efficiency Silicon Carbide (SiC) devices

More information

THE FUTURE DIRECTION OF THE ELECTRIFIED VEHICLE UTILIZING OF BIG DATA

THE FUTURE DIRECTION OF THE ELECTRIFIED VEHICLE UTILIZING OF BIG DATA MOTOR & UMWELT 218 ENGINE & ENVIRONMENT 218 THE FUTURE DIRECTION OF THE ELECTRIFIED VEHICLE UTILIZING OF BIG DATA Shizuo Abe Toyota Motor Corporation 3 th International AVL Conference Engine & Environment,

More information

New Inverter Layout and DC Link Capacitor Integration for Increased System Density and Performance

New Inverter Layout and DC Link Capacitor Integration for Increased System Density and Performance New Inverter Layout and DC Link Capacitor Integration for Increased System Density and Performance Author: Ed Sawyer SBE Inc. EdSawyer@sbelectronics.com Abstract - A new Inverter/DC Link Capacitor approach

More information

DESIGNING AN ELECTRIFIED VEHICLE:

DESIGNING AN ELECTRIFIED VEHICLE: DESIGNING AN ELECTRIFIED VEHICLE: How Vehicle Level Attributes Drive High Voltage Subsystem Design Dr. Daniel Kok Manager - Advanced Electrified Powertrain Systems Ford Motor Company International Conference

More information

Achieves a high-efficiency conversion of 94% despite being isolated type through digital control

Achieves a high-efficiency conversion of 94% despite being isolated type through digital control We support stable electric power. Supporting Smart Grids Bidirectional DC-DC Converters Achieves a high-efficiency conversion of 94% despite being isolated type through digital control Verification tests

More information

hofer powertrain GmbH

hofer powertrain GmbH HEV 2017 Symposium Braunschweig hofer powertrain GmbH A company of the hofer AG 72622 Nürtingen Ohmstr. 15 email: info@hofer.de Comparison of high power edrive solutions High Current edrives are mainly

More information

Fundamentals and Classification of Hybrid Electric Vehicles Ojas M. Govardhan (Department of mechanical engineering, MIT College of Engineering, Pune)

Fundamentals and Classification of Hybrid Electric Vehicles Ojas M. Govardhan (Department of mechanical engineering, MIT College of Engineering, Pune) RESEARCH ARTICLE OPEN ACCESS Fundamentals and Classification of Hybrid Electric Vehicles Ojas M. Govardhan (Department of mechanical engineering, MIT College of Engineering, Pune) Abstract: Depleting fossil

More information

Power Electronics Projects

Power Electronics Projects Power Electronics Projects I. POWER ELECTRONICS based MULTI-PORT SYSTEMS 1. Analysis, Design, Modeling, and Control of an Interleaved- Boost Full-ridge Three-Port Converter for Hybrid Renewable Energy

More information

Power electronics solutions for DC networks

Power electronics solutions for DC networks Power electronics solutions for DC networks Prof. Dr.-Ing. Marco Liserre Chair of Power Electronics Christian-Albrechts-Universität zu Kiel Kaiserstraße 2 24143 Kiel slide 1 Smart Grids Integration of

More information

White Paper: Pervasive Power: Integrated Energy Storage for POL Delivery

White Paper: Pervasive Power: Integrated Energy Storage for POL Delivery Pervasive Power: Integrated Energy Storage for POL Delivery Pervasive Power Overview This paper introduces several new concepts for micro-power electronic system design. These concepts are based on the

More information

The Challenges of Electric Energy Storage. Nigel Taylor, Nick Green, Chris Lyness, Steve Nicholls

The Challenges of Electric Energy Storage. Nigel Taylor, Nick Green, Chris Lyness, Steve Nicholls The Challenges of Electric Energy Storage Nigel Taylor, Nick Green, Chris Lyness, Steve Nicholls Technology Walk Customer familiarity with recharging IC HEV PHEV EV Kinetic energy recovery Plug-in Battery

More information

Technical Challenges and Barriers Affecting Turbo-electric and Hybrid Electric Aircraft Propulsion

Technical Challenges and Barriers Affecting Turbo-electric and Hybrid Electric Aircraft Propulsion Technical Challenges and Barriers Affecting Turbo-electric and Hybrid Electric Aircraft Propulsion Dr. Ajay Misra Deputy Director, Research and Engineering NASA Glenn Research Center Keynote presentation

More information

Li-ion Batteries and Electric Vehicles

Li-ion Batteries and Electric Vehicles Li-ion Batteries and Electric Vehicles October 27, 2010 Joel Sandahl ZX Technologies, Inc. 760 Spanish Oak Trail Dripping Springs, TX 78620 USA Phone: +1-512-964-9786 E-Mail: jsandahl@zxtech.net Introduction

More information

Power Electronics for Medium Voltage Grid Applications Topologies and Semiconductors

Power Electronics for Medium Voltage Grid Applications Topologies and Semiconductors Grid Applications Topologies and Semiconductors Prof. Dr.-Ing. Marc Hiller ELECTROTECHNICAL INSTITUTE (ETI) KIT The Research University in the Helmholtz Association www.kit.edu The Electrical Drives and

More information

Hello, my name is Takehiro Kamigama. I will present the full-year consolidated projections for fiscal 2015.

Hello, my name is Takehiro Kamigama. I will present the full-year consolidated projections for fiscal 2015. Hello, my name is Takehiro Kamigama. I will present the full-year consolidated projections for fiscal 2015. My first slide shows you our performance and dividend forecasts. We expect net sales to grow

More information

James Goss, Mircea Popescu, Dave Staton. 11 October 2012, Stuttgart, Germany

James Goss, Mircea Popescu, Dave Staton. 11 October 2012, Stuttgart, Germany Implications of real-world drive cycles on efficiencies and life cycle costs of two solutions for HEV traction: Synchronous PM motor vs Copper Rotor - IM James Goss, Mircea Popescu, Dave Staton 11 October

More information

Advanced Topics. Packaging Power Distribution I/O. ECE 261 James Morizio 1

Advanced Topics. Packaging Power Distribution I/O. ECE 261 James Morizio 1 Advanced Topics Packaging Power Distribution I/O ECE 261 James Morizio 1 Package functions Packages Electrical connection of signals and power from chip to board Little delay or distortion Mechanical connection

More information

Electric Vehicles: Opportunities and Challenges

Electric Vehicles: Opportunities and Challenges Electric Vehicles: Opportunities and Challenges Henry Lee and Alex Clark HKS Energy Policy Seminar Nov. 13, 2017 11/13/2017 HKS Energy Policy Seminar 1 Introduction In 2011, Grant Lovellette and I wrote

More information

gan power Energy-efficient Power Electronics using Gallium Nitride Transistors Leti, technology research institute Contact:

gan power Energy-efficient Power Electronics using Gallium Nitride Transistors Leti, technology research institute Contact: gan power Energy-efficient Power Electronics using Gallium Nitride Transistors, technology research institute Contact: leti.contact@cea.fr A GROWTH MARKET GaN Devices for Next-Era Power Electronics $ 600.0M

More information

1/7. The series hybrid permits the internal combustion engine to operate at optimal speed for any given power requirement.

1/7. The series hybrid permits the internal combustion engine to operate at optimal speed for any given power requirement. 1/7 Facing the Challenges of the Current Hybrid Electric Drivetrain Jonathan Edelson (Principal Scientist), Paul Siebert, Aaron Sichel, Yadin Klein Chorus Motors Summary Presented is a high phase order

More information

FUTURE OF TRANSPORTATION TECHNOLOGIES

FUTURE OF TRANSPORTATION TECHNOLOGIES FUTURE OF TRANSPORTATION TECHNOLOGIES BJ Yurkovich Center for Automotive Research Energy Use Source: A. Majumdar, ARPA-E Energy use and per capita GDP ENERGY (FUELS) Natural Gas for Mobility WHY USE ELECTRICITY

More information

EE Architecture for Highly Electrified Powertrain

EE Architecture for Highly Electrified Powertrain EE Architecture for Highly Electrified Powertrain 2020-2030 M. Gleich, Senior Manager Marketing and Business Development Powertrain - restricted - Context Resources, Pollution, Climate Urbanization Moore

More information

PHEV charging for the real world. PHEV2007 Winnipeg, MB. Power in Motion. Power Conversion and Power Management Products for. Hybrid Drive Vehicles

PHEV charging for the real world. PHEV2007 Winnipeg, MB. Power in Motion. Power Conversion and Power Management Products for. Hybrid Drive Vehicles PHEV charging for the real world PHEV2007 Winnipeg, MB 1 Presentation Points Delta-Q s perspective Fleet Charging Overview PHEV Basics PHEV Roadmap 2 Delta-Q Perspective 200,000 chargers fielded since

More information

Influences on the market for low carbon vehicles

Influences on the market for low carbon vehicles Influences on the market for low carbon vehicles 2020-30 Alex Stewart Senior Consultant Element Energy Low CVP conference 2011 1 About Element Energy London FC bus, launched December 2010 Riversimple H2

More information

By Vicky Hogge & Dorian Mirchandani Tech 646 Analysis of Research in Industry & Technology September 26, 2011

By Vicky Hogge & Dorian Mirchandani Tech 646 Analysis of Research in Industry & Technology September 26, 2011 By Vicky Hogge & Dorian Mirchandani Tech 646 Analysis of Research in Industry & Technology September 26, 2011 Plug in hybrid electric vehicles (PHEVs) Curb emission and reduce cost of transportation Integrate

More information

Wireless Power Transfer at VEDECOM. François COLET, Mustapha DEBBOU 77 Rue des Chantiers, Versailles, France

Wireless Power Transfer at VEDECOM. François COLET, Mustapha DEBBOU 77 Rue des Chantiers, Versailles, France Wireless Power Transfer at VEDECOM François COLET, Mustapha DEBBOU 77 Rue des Chantiers, 78000 Versailles, France version 09/06/2016 OUTLINE 2 I. Introduction II. Wireless Power Transfer Charging system

More information

Challenges of integration of power supplies on chip. Indumini Ranmuthu Ph.D October 2016

Challenges of integration of power supplies on chip. Indumini Ranmuthu Ph.D October 2016 Challenges of integration of power supplies on chip Indumini Ranmuthu Ph.D October 2016 Why this is important: There is significant trend in the industry towards power density and integration in power

More information

Optimized IGBT technology for mild hybrid vehicles

Optimized IGBT technology for mild hybrid vehicles EVS27 Barcelona, Spain, November 17-20, 2013 Optimized IGBT technology for mild hybrid vehicles Dr. Carlos Castro 1, Laurent Beaurenaut 1 1 Infineon Technologies AG, Am Campeon 1-12, D-85579, Neubiberg,

More information

in E-mobility applications

in E-mobility applications Thermal management for batteries in E-mobility applications Alessandro Bizzarri, Priatherm on behalf of Batenburg Mechatronica 2 Company overview relator presentation Batenburg Mechatronica Focus on smart

More information