Interoperability of vehicles and charging infrastructure a solvable challenge?

Similar documents
ISO15118 STANDARDIZATION AND MARKET INTRODUCTION VECTOR EMOBILITY ENGINEERING DAY, STUTTGART , M. SCHWAIGER/BMW

Smart Testing of Smart Charging

CharIN e.v. The path to a global charging standard. Coordination Office CharIN c/o innos - Sperlich GmbH 2017/02/ /03/23

The way to a global standard

The way to a global standard

Electric cars: Technology

Fostering Global EV Adoption. Oleg Logvinov, CharIN NA Spokesperson

Combined Charging. Current status of the Combined Charging System. EPRI Infrastructure Working Council December 14, 2011

CharIN e.v. Der Weg zum Erfolg eines globalen Ladestandards Technologie, Standardisierung, Organisation

E-Mobility in Planning and Operation of future Distribution Grids. Michael Schneider I Head of Siemens PTI

Position Paper of Charging Interface Initiative e.v.

DC CCS Power Classes v6, Final

E-Mobility It s all about the Charging

Electric buses Solutions portfolio

Frankonia Battery System

KEY FACTS HUBJECT. A SHORT INTRODUCTION INTO HUBJECT AND THE OPEN eroaming MARKET MODEL. Martin Petschnig

Organized by Hosted by In collaboration with Supported by

Brussels, 14 September ACEA position and recommendations for the standardization of the charging of electrically chargeable vehicles

CharIN e.v. The Path to High Power Charging How to Solve the Drawback of Charging Times?

ChargingDiscoverySystem Testing charging function and interoperability

Keysight Technologies Scienlab Charging Discovery System

COTEVOS Test Cases around the Charging System Operator: A manufacturer s view

Dynamic DC Emulator Efficient testing of charging technology and power electronics

Future mechatronical platform for easy application of assistant systems - EU-project

COTEVOS COncepts, capacities and methods for Testing EV systems and their interoperability within the Smartgrids

European Corridor Austrian Testbed for Cooperative Systems

US/EU EV-Smart Grid Interoperability Centers Harmonization of PEV standards, technology and test procedures

CHEMICALS AND REFINING. ABB in chemicals and refining A proven approach for transforming your challenges into opportunities

VEHICLE TECHNOLOGIES PROGRAM

CACTUS Models and Methods for the Evaluation and the Optimal Application of Battery Charging and Switching Technologies for Electric Busses

EV ELECTRIFICATION FOR SUSTAINABLE PROFITABILITY

Green emotion. Development of the European Framework for Electromobility. FP7 call TRANSPORT TREN partners Project Start: March 2011

Electric Vehicle Cyber Research

Combined Charging the universal charging system

Mobile speed in automotive

2 nd use application of battery cells: functional safety requirements

Information for journalists and media representatives Micro Smart Grid

MOBILITY STRATEGY AND APPROACH OF IEC. Dr. Bernhard Thies German National Committee of the IEC

Neue Lösungen für die Elektromobilität - Vielfältige Möglichkeiten mit intelligenter Ladeinfrastruktur

Customer Expectations and Technical Solutions for Third Generation Electric Vehicles

REPORT ON DEFINED HOD DRIVELINE AND FRAMEWORK CAPABILITIES AND FEATURES

Smart Grid What is it all about? Smart Grid Scenarios. Incorporation of Electric Vehicles. Vehicle-to-Grid Interface applying ISO/IEC 15118

Efficient performance precise operation. PVG proportional valves

Last Trends in Communication Standards for E-Mobility

CENELEC TC 8X/WG 06 System Aspects of HVDC Grids

Components and systems for advanced rail vehicles World-class portfolio from electric traction to bogies

E-Mobility Perspectives, Challenges and Globalization Die Stadt der Zukunft Die Zukunft der Stadt Amerikazentrum Hamburg

Agenda of the Green emotion Project Session

Vector E-Mobility Engineering Day. Platform implementing V2G services Bidirectional Power Transfer using Edition 2.

SERVICES SafE e-mobility for SuRE! CoNSultaNCy testing HomoloGatIoN CERtIfICatIoN

Cybersecurity for e-mobility system in worldwide standardization. innogy SE Stephan Voit

Save-the-date: Workshop on batteries for electric mobility

E-Mobility and V2G A Matching Pair

Motorcycles in connected traffic - a contribution to safety

Position Paper of Charging Interface Initiative e.v.

IN SPRINTS TOWARDS AUTONOMOUS DRIVING. BMW GROUP TECHNOLOGY WORKSHOPS. December 2017

ISO 91:2017 Consulting Paper. Guidance for QuantityWare BCP Implementations

Fuel Cell Systems Product Overview. Systems

5th International ISO/IEC Interoperability and Conformance Testing Symposium TESTING SYMPOSIUM

Towards Market Leadership Electric Mobility in Germany. evs27, Barcelona, November 19, 2013

Smart Charging and Vehicle Grid Integration Silicon Valley Leadership Group PEV Forum December 16, 2014

Vehicle inlet - EV-T2GBIE12-1ACDC-20A125A2,0M

fsens Force Measurement

Citi's 2016 Car of the Future Symposium

Number 1 in efficiency

Electromechanical Tilting Systems for Passenger Trains

Green emotion Development of a European framework for electromobility

Electric Vehicle Cyber Research

BAUMA 2013 Electric Rope Shovel

Siemens Power Rectifiers powering your industrial copper and zinc electrolysis siemens.com/mining

Number 1 in efficiency

STRATEGIES FOR THE MOBILITY TRANSFORMATION HANNO MIORINI, ROBERT BOSCH GROUP

PRODUCT PORTFOLIO. Electric Vehicle Infrastructure ABB Ability Connected Services

Intelligent vehicle concept based on

R&D: FUTURE-PROOFING THE BMW GROUP. DR. HERBERT DIESS MEMBER OF THE BOARD OF MANAGEMENT OF BMW AG, DEVELOPMENT

Stuart Michie, Network Management, 9 May 2013 Demystifying the Smart Grid Technology Days. ABB 08 May 2013 Slide 1

Towards C-ITS DAY1 for PTW Issues and opportunities

E-DRIVE: HIGHLY INTEGRATED AND HIGH EFFICIENT

Traction Systems GC01DTR01_C 08/2013. Ingeteam Traction

ITD Systems Core Partners Wave 04

EV Charging Infrastructure

The leader in clean electric transportation. Corporate Overview NASDAQ: ECTY April 20, 2011

The Road to Electrification The Magna Powertrain Approach. Dr. Stephan Weng EVP GETRAG Global, Magna Powertrain

Thema der Arbeit. Discussion of IT-infrastructure for electric mobility. Bachelorarbeit. vorgelegt von. Patrick-Oliver Groß

EVlink Overview. Electric Vehicle Charging Solutions. (for Australia) Product Manager: Nicolas Larue Apr-2015 V4.

COTEVOS: Concepts, Capaci3es and Methods for Tes3ng EV Systems and their InterOperability within the Smartgrid

Foundation Fieldbus System Design and Engineering of CSPC Nanhai Project

Achieving Smarter Grid and Greener Future in Macau: CEM s Perspective

High Voltage DC Fuse Protection for Hybrid Electric Vehicles

Design and evaluate vehicle architectures to reach the best trade-off between performance, range and comfort. Unrestricted.

Bharat Heavy Electricals Limited, Electronics Division, Bangalore, India.

19th International Forum on Advanced Microsystems for Automotive Applications

Dunkermotoren VENETIAN BLIND DRIVES

Hamburg moving towards Electromobility. Dr. Sicco Rah Hanse-Office, Joint Representation of Hamburg and Schleswig-Holstein to the EU

European Conference on Nanoelectronics and Embedded Systems for Electric Mobility. Internet of Energy Ecosystems Solutions

Internet of Mobility. Challenges for Data Security, Privacy and Standards. ETSI IoT/M2M Workshop Session 8: IoT in Vertical Sectors

LESSONS LEARNED FROM ELECTRIC VEHICLES TO ACHIEVE NEW MOBILITY CHALLENGES

Exceeding the standards with MNS

June 12 th, 2013 / Steven Dorresteijn, PG EVCI EV Charging infrastructure International NoAE Project-Day E-mobility Aachen

Reji Kumar Pillai President - India Smart Grid Forum Chairman - Global Smart Grid Federation

Transcription:

Interoperability of vehicles and charging infrastructure a solvable challenge? Vector E-Mobility Engineering Day 2018 V0.3 2018-04-01

Agenda 1. Interoperability activities at CharIN 2. Ensuring interoperability today and tomorrow 3. Definition of the CCS Test System 4. Vector Test Solution 5. Summary 2

Interoperability activities at CharIN Overview Charging Interface Initiative e.v. - abbreviated to CharIN e.v. registered association founded by Audi, BMW, Daimler, Mennekes, Opel, Phoenix Contact, Porsche, TÜV SÜD and Volkswagen based in Berlin open to all interested parties The primary aims are: To develop and establish the Combined Charging System (CCS) as the standard for charging battery-powered electric vehicles of all kinds To draw up requirements for the evolution of charging-related standards (e.g. inductive and pantograph connection) To develop a certification system for use by manufacturers implementing the combined charging system in their products Source: www.charinev.org 3

Interoperability activities at CharIN Focus Group Conformance Test / Interoperability Team Development / Vendor Team Team Qualification Requirements for Golden Test Device (GTD) Interoperability of customer use cases Enabling of multiple GTDs of manufacturers or test houses Achieve global acceptance of GTD Renaming from GTD to CCS Test System Source: www.charinev.org 4

Interoperability activities at CharIN Background of Vendor Team Related research projects in Germany 2012 2014 Siemens AG common partners 2014-2017 Porsche AG Fraunhofer IFF & IWES BMW AG RWTH Aachen University RWE Effizienz GmbH Daimler AG Universität Stuttgart TU Dortmund Communication Networks Institute (CNI) Continental AG Volkswagen AG DG Verlag EnBW Members up to now (A Spin-Off from TU Dortmund, CNI) Engagement in Standardisation ISO 15118 DIN SPEC 70121 DIN SPEC 70122 IEC 61851-23 5

Agenda 1. Interoperability activities at CharIN 2. Ensuring interoperability today and tomorrow 3. Definition of the CCS Test System 4. Vector Test Solution 5. Summary 6

Ensuring interoperability today and tomorrow Current situation N x M What does N x M testing mean? Field tests OEMs are maintaining charge parks EVSE manufactures are maintaining a electric vehicle fleet Public testing events (e.g. ISO/IEC 15118 Testing Symposium) 7

Ensuring interoperability today and tomorrow Goal Today N x M Manual testing Implementation vs. Implementation Good case only Not feasible for growing market Goal CCS Test System Automated testing Test Cases vs. Implementation Good and error cases Scalable for growing market 8

Ensuring interoperability today and tomorrow Mission of Vendor Team Availability of comparable CCS Test Systems from different Vendors Meeting all complex market requirements Respecting all relevant international standards Modular and scalable architecture by design Ensure high quality of each Test System Enabling Product Certification of EV and EVSE Goals for 2018: Release of CCS Test System Specification document Availability of CCS Test Systems supporting CCS 1.0 / 2.0 9

Agenda 1. Interoperability activities at CharIN 2. Ensuring interoperability today and tomorrow 3. Definition of the CCS Test System 4. Vector Test Solution 5. Summary 10

Definition of the CCS Test System Architecture Applicable Standards & Requirements Test Specification Document 1 Document 2 Document n Documents (Testcases) CharIn Function List CharIn approved Testcase Implementation (Readonly) Executable Testcases CharIn Unified Reportformat Reporting 1 2 LL COM PWM /Proximity Measurements 4 Test Executor HL COM HPGP / 802.11n Codecs Diagnostics Security 3 Power Transfer AC / DC Source / Sink Contacting Control & Measurements Public Vendor Specific SUT Physical Charging Interface 11

Definition of the CCS Test System CCS Configuration Matrix CCS Configuration LL COM HL COM 1 2 3 4 Power Transfer Security PWM/ Proximity HPGP (PLC) 802.11n (WiFi) AC DC TLS CCS 1.0 (BS only) X X CCS 1.0 Communication only X X CCS 1.0 X X X X CCS 2.0 (EIM) Communication only X X CCS 2.0 (PnC) Communication only X X X CCS 2.0 (EIM) X X X X CCS 2.0 (PnC) X X X X X CCS 3.0 X X X X X X 12

Definition of the CCS Test System Function list & Electrical specification Overall 84 Functions are defined: Function Blocks LL COM HL COM Security Power Transfer Detail Blocks PWM Proximity HPGP Messages Codec XmlSecurity TLS AC DC 57 Electrical Specifications Unit Range Resolution Accuracy Normative Requirement 13

Definition of the CCS Test System Modular and scalable CCS Test System offered from different vendors Modular and scalable Usage of HW (communication, power transfer) and SW (test cases, test executor) from different vendors possible by a common defined interface Broad range from small CCS Test System (communication only) to big CCS Test System (full power support) possible CCS Test System subsequently expandable to cover all SUT Adaption of power transfer HW (sink or source) according to HPC power class of SUT possible Definition of CCS Test System is only minimum requirement Offered from different Vendors Decision of customer which CCS Test System to use Further usage of already available test systems possible, no complete reinvest necessary Working with well-known and established test systems allows faster time to market 14

Agenda 1. Interoperability activities at CharIN 2. Ensuring interoperability today and tomorrow 3. Definition of the CCS Test System 4. Vector Test Solution 5. Summary 15

Vector Test Solution Vector s contribution to ensure interoperability Applicable Standards & Requirements Test Specification Document 1 Document 2 Document n Documents (Testcases) CharIn Function List CharIn approved Testcase Implementation (Readonly) Executable Testcases CharIn Unified Reportformat Reporting 1 2 LL COM PWM /Proximity Measurements 4 Test Executor HL COM HPGP / 802.11n Codecs Diagnostics Security 3 Power Transfer AC / DC Source / Sink Contacting Control & Measurements Public Vendor Specific SUT Physical Charging Interface 16

Vector Test Solution Vector s contribution to ensure interoperability Function Tools CCS 1.0 CCS 2.0 Test Package Test Package for SCC Conformance under development under development Applicable Standards & Requirements Test Specification Document 1 Document 2 Document n Documents (Testcases) Test Execution CANoe Test Editing vteststudio Test Reporting Test Report Viewer Test Hardware VT System CharIn Function List CharIn Unified Reportformat Reporting CharIn approved Testcase Implementation (Readonly) 1 2 LL COM PWM /Proximity Measurements 4 Test Executor HL COM HPGP / 802.11n Codecs Diagnostics Security Executable Testcases 3 Power Transfer AC / DC Source / Sink Contacting Control & Measurements 3 rd party HW interface Any CharIN compliant HW Public Vendor Specific SUT Physical Charging Interface Complete off-the-shelf CCS Test System solution 17

Agenda 1. Interoperability activities at CharIN 2. Ensuring interoperability today and tomorrow 3. Definition of the CCS Test System 4. Vector Test Solution 5. Summary 18

Summary Interoperability of vehicles and charging infrastructure a solvable challenge? Test Cases are available work within CharIN YES, because Test Systems are available Test Specifications are available 19

For more information about Vector and our products please visit www.vector.com Author: Jan Großmann Vector Germany 20 2018. Vector Informatik GmbH. All rights reserved. Any distribution or copying is subject to prior written approval by Vector. V0.3 2018-04-01