Why choose Electronic Engineering?

Similar documents
The Future Sustainable Energy System Synergy between industry, researchers and students as a key to an efficient energy system transformation

Energy Conversions Questions CfE

Afghanistan Energy Study

Introduction of EE Power & Renewable Energy Track

CICED 2016 Xi an, China

7/28/2017. Community Resiliency and Sustainability. David Kang. Vice Chancellor. Infrastructure and Safety PERCEPTION. Photo citation:

Intelligent Mobility for Smart Cities

Smart Grids and Integration of Renewable Energies

CMU Electricity Conference, 9th March 2011

EGAT Smart Grid Pilot Project

Smart Grid and its Role in Reducing Peak Demand and Improving Electricity Delivery

V2G and V2H The smart future of vehicle-to-grid and vehicle-to-home. September 2016

The University of St. Thomas Renewable Energy Facility (USTREF)

Conclusions. Fall 2010

The Grid Link Project. Summary of the Report for the Independent Expert Panel

IBM SmartGrid Vision and Projects

Energy storage in future energy systems Pyhäjärvi Energy Storage in Mine , Vantaa Matti Paljakka, VTT

Transforming the US Electric Grid

Power Transmission Lines Are there alternatives?

ABB Wind Industry Sector Initiative Greengrowth Tallinn, 16 September 2011 Cutting-Edge Wind Energy Solutions Challenges and Solutions ABB Viewpoint

SMART DIGITAL GRIDS: AT THE HEART OF THE ENERGY TRANSITION

Electricity Distribution in a Distributed Energy Future

Hybrid Systems for Minigrids. Scaling Up Renewable Energy Minigrids for Rural Electrification. August Raipur, Chhattisgarh

Siemens Power System Consulting

The Hon. Robert Powelson. NARUC President

THE ADVANCED SMART GRID

Power Electronics Applications where power electronics makes a real difference

ABB Next Level Big shift in power attractive opportunities

GRID CONNECTED SOLAR WIND HYBRID POWER BASED ON IOT

Optimal and Modular Configuration of Wind Integrated Hybrid Power Plants for Off-Grid Systems

Electric cars: Technology

Electric cars: Technology

UNC-Charlotte's Power Engineering Teaching lab

Electric Power Engineering, Chalmers

Storage in the energy market

Integrating Solar into a Modernized Grid. Dr. Bryan Hannegan Associate Laboratory Director

Enable Utility Industry Transformation

Distributed Generation and the Importance of the Electric Power Grid

Opportunities and Challenges for Smart Grid in Japan. March 8, Shuichi Ashidate

Future Trends for Power Systems

Sensors for hybrid power generation system

Microgrid solutions Delivering resilient power anywhere at any time

The Role of Offshore Wind

Exploring IoT Co-Dependencies in Electro-Mobility

Smart Cities Industry, Technology and Citizens. December 2017 Dr. Fritz Rettberg

Smart Grid and Renewable Energy Workforce Development and Training Programs at Penn State University

Smart grids in European Union. Andrej GREBENC European Commission "Energy Awarness Seminar Villach

Control of Wind Turbines: A data-driven approach

Course Syllabus and Information

INCREASING ENERGY EFFICIENCY BY MODEL BASED DESIGN

Master Thesis Proposal: Real-time and off-line simulation of DC Grids

Materials Research for Smart Grid Applications

Future of the Power System? Presented by : Yazhou (Joel) Liu, Ph.D., PE Schneider Electric Engineering Services electric.

Japan core market for any strategy in Renewable Energy and E-Mobility

The Electricity and Transportation Infrastructure Convergence Using Electrical Vehicles

DOE s Focus on Energy Efficient Mobility Systems

NREL Microgrid Controller Innovation Challenge Event

Electrical Energy Engineering Program EEE

A FIT FOR PURPOSE DISTRIBUTION NETWORK -Mini Grids- By Werikhe Godfrey Deputy Executive Director REA Uganda

Within the 300 GW total, the Energy Department estimates that 54 GW will be required from offshore wind to feed the large coastal demand centers.

3 Electricity from Magnetism

Energy Systems and Storage Integration R&D at NREL

The University of St. Thomas Renewable Energy Facility (USTREF)

MindSphere The IoT operating system for smart cities. Hakan Olcay, Energy Efficiency Coordinator at Siemens

DEVELOPING TALENT GROWING VENTURES OPENING MARKETS. CCRE Policy Forum. Paul Murphy, Nov 24, Our Future Matters

Share with the GHSEA. Smart Energy Initiatives. Collaboration and a partner eco-system to achieve results

Digital Twin Validation for Distributed Resource Converters and Assets

The virtual battery: energy management in buildings and neighbourhoods siemens.com

Profile BLDC Motors PM Alternators Services

Features of PSEC Educational Programs

Research Needs for Grid Modernization

Opportunities for the Power Grid in the Changing Energy Economy

Power distribution: contributing to the European energy transition

Overview of Solar Energy in the Mekong Region

Optimal Design of Hybrid Energy System with PV/ Wind Turbine/ Storage: A Case Study

REMOTE MONITORING, DUST DETECTING AND CONTROLLING OF SOLAR PHOTOVOLTAIC USING IOT

Modeling the Neuro-Fuzzy Control with the Dynamic Model of the Permanent Magnet DC Motor

Application of PLC in automatic control system in the production of steel. FAN Zhechao, FENG Hongwei

NEDO s Smart Grid Demonstration Projects in the U. S. JUMPSmartmaui Project in Hawaii

Loss Minimization & Grid Stability in the Azores

Power Networks. Professor Graeme Burt Institute for Energy & Environment, University of Strathclyde

Behaviour of battery energy storage system with PV

Ingenuity for Life Wind Power Morten Pilgaard Rasmussen. Restricted Siemens AG 2016

Highly dynamic control of a test bench for highspeed train pantographs

Nancy Gioia Director, Global Electrification Ford Motor Company

Smart Micro Grids and Cellular Grids

Grid Impacts of Variable Generation at High Penetration Levels

HVDC Innovative Technology for Smart Grids and Super Grids. Wilfried Breuer CEO Power Transmission Solutions, Siemens Energy Sector

The International Cost Estimating and Analysis Association (ICEAA) Southern California Chapter September 9, 2015

State of the Energy Sector: National Perspective. David K. Owens E2Tech Expo November 17, 2016 Portland, ME

Power Systems On the growth path

The future role of storage in a smart and flexible energy system

Chapter Review USING KEY TERMS UNDERSTANDING KEY IDEAS. Skills Worksheet. Multiple Choice

Elektro Ljubljana d. d. Positive energy networking

ABB Fact Sheet Full-year ABB Slide 1

PIESA-IERE TIS Africa Lilongwe Workshop

Our transition to Distribution System Operator Future Smart. 14 September 2017

The Future of Energy Delivery: The Ongoing Grid Transformation

Reforming Electric Energy Systems Curriculum with Emphasis on Sustainability

Getting Smart Evolution to the Smart Grid April 2008

Transcription:

Outline Why choose Electronic Engineering? Professor Peter Kennedy Professor of Microelectronic Engineering University College Dublin What is Engineering? What is Electrical and Electronic Engineering? What is Electronic Engineering? What will I study? Where will I work? Conclusion 2/15 What is Engineering? What is Electrical and Electronic Engineering? the application of science and mathematics by which the properties of matter and the sources of energy in nature are made useful to people Merriam-Webster the application of science and mathematics by which the electrical and electronic properties of matter and the sources of energy in nature are made useful to people Merriam-Webster 3/15 4/15 1

Electrical and Electronic Engineering Electrical Engineering: mainly processing energy in electrical form Electronic Engineering: mainly processing information in electrical form Processing Information in Electrical Form The Physical World is continuous; the Digital World is discrete Sense physical variables (temperature, pressure, light) and convert to electrical quantities (charge, voltage, EM waves) Represent real variables as binary numbers and symbols (quanta of voltage or charge, packets of EM energy) Process these symbols Convert electrical quantities back to physical quantities (pressure, light) 5/15 6/15 Processing Information Electronically Electronic Engineering Drivers Sensors Signal Processing Communications Data Analytics Control Actuators Computation/Signal Processing Communications Data Analytics Power Electronics Imaging 7/15 8/15 2

Electronic Engineering Transforming the World Electronic Engineering Transforming the World 9/15 10/15 Electronic Engineering Transforming the World Electronic Engineering Fundamentals Sensors & Actuators Electronic Circuits Signal Processing Communications Data Analytics Control 11/15 12/15 3

Sample Electronic Engineering Employers Conclusion Engineering is about solving problems using science, maths, and the properties of materials Electronic Engineering uses electrical properties of materials to process information Electronics has revolutionized society and continues to transform our lives Every application domain needs more Electronic Engineering The demand for core Electronic Engineering skills (signal processing, communications, analytics) is strong nationally and internationally 13/15 14/15 What makes an Engineer? Business / Management Maths / Physics Computer Science / I.T. Engineering 15/15 Innovation / Ingenuity Artistry / Flair Communication Skills Electrical Engineering Dr Terence O Donnell Associate Professor, School of Electrical and Electronic Engineering 4

What is Electrical Engineering? Generating and Transmitting Electrical Energy Electrical Engineering is concerned with the generation, transmission and use of electricity for powering the world. Use of Electricity The generation & use of electricity is undergoing a major change Iron Core i 1 i 2 v 1 N 1 N 2 v 2 Magnetic Flux 5

Renewable Energy Technologies The Power Grid must become Smart Source: Hitachi Source: NREL Transportation is going all Electric Supergrids Source: DESERTEC 6

DC Transmission Electrical Engineering subjects DC Transmission of electricity is making a comeback due to advances in power electronics. Power Systems Electrical Machines Power Electronics Renewable Energy Energy Economics Example Electrical Engineering Projects Electrical Engineering Opportunities Impact of Data Centres on the Dynamics of the Power System Scope for cyber attacks on electrical power systems Modelling and Simulation of PV Solar farms Geographic Optimisation of Renewable Asset Portfolios to Reduce Risk of Market Exposure * Design of a micro-combined heat and power (CHP) system* Balancing Electrical Markets with Large-Scale Hydro Storage * Desing of a power converter for a dual battery (48 V and 12 V) hybrid vehicle* Many new technologies: -Renewable technologies, Electric Storage, Control and communication systems, Decentralised Energy Production, Electrification of Transport, Control of the demand Energy Policy will demand a strong focus on sustainability and renewables Huge challenges in power system operation with very high levels of renewable energy Strong multi-disciplinary focus: economics, sustainability, climatology 7

Electrical Engineering in UCD DANIEL LEVIE FINAL YEAR MASTERS STUDENT IN ELECTRICAL ENERGY ENGINEERING 2013 2017 My Experiences September 2013 September 2015 July 2016 January 2017 August 2017 September 2017 May 2018 Electrical Engineering Projects Electrical Engineering Labs Defending against Cyber attacks on the electrical grid Impact of Data Centres on the Dynamics of the Power System Grid Emulator for Real Time, Hardware in the Loop Testing Modelling and Simulation of Wind Turbines 8

Masters Work placement at EirGrid The Oval Ballsbridge Worked in Operations, Performance and Innovation Department Lots of visits to Generation Stations Masters Research project Balancing Electrical Grids with Large Scale Hydro Storage Things Happening in Industry Now. 9

Floating Solar Farms Offshore Wind The Future Smart Grids Electric Cars 10

Maybe even designing Electrical Systems for a Mars Base.. Thank You! Any Questions 11