Electric Power Engineering, Chalmers
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1 Electric Power Engineering, Chalmers October 25, 2018 David Steen Division of Electric Power Engineering Chalmers University of Technology Gothenburg, Sweden
2 Agenda Short about EPE, Chalmers EPE, Chalmers FED Fossil free energy districts m2m-grid UNITED-GRID Energy Management System for Smart Buildings and Grid Interactions Future Research 2
3 New Department - New division Department of Electrical Engineering Divisions Communication and Antenna systems Signal processing and Biomedical engineering Electric Power Engineering Systems and control Units Power grids and components Electrical machines and drives Expertize areas 3
4 Power systems and power electronics High Voltage components and insulation Renewable energy and grid integration Electrical machines and drives Electrical vehicle and transportation systems Study sustainable power systems consisting HVDC transmission and smartgrid based distribution for higher efficiency and flexibility Power systems Power electronics in power systems DC network Smart-grid and distribution Aim at develop high voltage isolation system with power full components Materials and material characterization Measurement techniques and insulation diagnostics Electromagnetic modelling and simulation Explore technologies for renewable energy generation and integration, including wind, solar, and ocean for zero-emission and stable power supply Wind turbine drive-train Wind power integration Renewable energy systems Energy storage Develop high-efficiency and high-performance drive solutions to maximize energy saving and material utilization All-in-One drive train High efficiency machine Converter and control Advanced testing Strive for electrification of transport systems by providing innovative and cost-effective concepts, convincing demonstration, and verified knowledge On-board electric drivelines Battery Electrical system operation and control on electric vehicles Charging 4
5 Micro-grid related research at Electric Power Engineering, Chalmers CHALMERS DEMO site Positive Footprint Housing (brf. VIVA) DEMO site DEMO site Building control Interaction DEMO site Distribution systems 5
6 FED Local energy market Local market participants Reaching more participants providing flexibility Heat and cooling more local now marketable Stimulates investments in local production Market operation Automated operation Total optimization between energy carriers Credible and intuitive operation principle External production and distribution Energy services possible to DSO, TSO, DH & DC Flexibility between energy carriers in the system Aggregator functionality 6
7 FED Local energy market 7
8 FED Local energy market 8
9 FED Simulation platform Model approach Objective functions Investment Dispatch Mixed integer linear programing Rolling time horizon Minimize cost Minimize CO 2 Minimize PE Investment options Solar PV Heat pumps Absorption chiller Batteries Accumulator tank Building thermal energy storage Cooling connection to MC2 Thermal Boiler Turbine Why? Cost efficient investment CO 2 and PE reduction Optimal dispatch Forecast errors Trading horizons Estimate baseline Impact of different energy prices 9
10 m2m-grid: From micro to Mega-GRID: Interactions of micro-grids in active distribution networks Aims to accelerate deployment of micro-grids by: Enhancing the distribution grid planning process to take into account technical and market impacts of micro-grid integration Developing control functions for effective coordination with distribution grids Developing a tool-box to exploit potential flexibility of micro-grids ERA-NET SMART GRIDS PLUS FROM LOCAL TRIALS TOWARDS A EUROPEAN KNOWLEDGE COMMUNITY 10
11 m2m-grid: From micro to Mega-GRID: Interactions of micro-grids in active distribution networks Different dispatch objectives for micro-grid and system operator DSO: reduce losses, avoid congestion, stable voltage profile etc. Micro-grid: Reduce cost, increased selfconsumption etc. ERA-NET SMART GRIDS PLUS FROM LOCAL TRIALS TOWARDS A EUROPEAN KNOWLEDGE COMMUNITY 11
12 UNITED-GRID: Integrated cyber-physical solutions for intelligent distribution grids with high penetration of renewables Aims to secure and optimise operation of the future intelligent distribution networks 12
13 UNITED-GRID: Integrated cyber-physical solutions for intelligent distribution grids with high penetration of renewables Project structure 13
14 UNITED-GRID: Integrated cyber-physical solutions for intelligent distribution grids with high penetration of renewables Main concept 14
15 Innovative Energy Management System for Smart Buildings and Grid Interactions Aims to develop a close to real-time Building Energy Management System (BEMS) for the HSB Living Lab Flexible electricity and heating loads Residents actively participate in energy management Investigate the roles and impacts of a large number of smart buildings on the operation of local networks (Grid support services) 15
16 Innovative Energy Management System for Smart Buildings and Grid Interactions 16
17 Innovative Energy Management System for Smart Buildings and Grid Interactions 17
18 New ideas! Flexibility index for cities New loads and interaction with district heating systems DSO- TSO interaction Ancillary services provided by DSO Integrated modelling of DSO-TSO grids Implications on power reductions from wind power Loss of revenue Increased lifetime? Grid formning converters New requirements When are they needed? Pattern recognition for battery health estimation Impact electric roads on power system Sizing of storage Autonomous EVs changes in charge profiles etc? 18
19 Thanks! For more information visit: or: al_orgs_level_2=e1ebc e-a9c3-185eacbe6a73 Elkraftteknik David Steen Electric power engineering Chalmers University of Technology
20 Electric Power Engineering Effects of network tariffs Energy based network tariff (EBT): Based on the electricity transferred over the grid. Monthly power based network tariff (MPT): Based on the monthly peak demand. Daily power based network tariff (DPT): Based on the daily peak demand. David Steen Dissertation seminar 19 th December of 21
21 Electric Power Engineering David Steen Dissertation seminar 19 th December of 21 Effects of network tariff Customers benefit s
22 Electric Power Engineering David Steen Dissertation seminar 19 th December of 21 Effects of network tariff Peak demand & losses
23 Electric Power Engineering David Steen Dissertation seminar 19 th December of 21 Effects of network tariff Transformer loading
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