04/07/2018 Lucian Toma - UPB RESERVE Simulations for NC validation. Slide No. 2 RESERVE 2016 All rights reserved.
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2 RESERVE simulation to validate our new techniques, Network Codes and Ancillary Services 9th June 2018 Aachen, Germany Lucian Toma UPB Slide No. 2 RESERVE 2016 All rights reserved.
3 PROJECT OVERVIEW DIAGRAM Slide No. 3 RESERVE 2016 All rights reserved.
4 Frequency Control related Simulations Voltage Control related Simulations Achievements and Next Steps Slide No. 4 RESERVE All rights reserved.
5 Frequency Control related Simulations Voltage Control related Simulations Achievements and Next Steps Slide No. 5 RESERVE All rights reserved.
6 OUTLINE OF THE WORK FOR FREQUENCY CONTROL Why? What? How? To validate the network codes, customized for various frequency control levels, proposed in the project off-line and real-time simulations Using the databases of the Romanian power system and test networks Using the models and algorithms developed by project partners By means of (3) simulation tools Slide No. 6 RESERVE All rights reserved.
7 FREQUENCY SIMULATIONS SCENARIO PLANS Scenarios for frequency control related network codes Frequency Related Definitions: Frequency and RoCoF Requirements for power converter-based Energy Storage Systems Requirements of minimum system inertia Distribution system frequency control System swing dynamics Requirements for grid-forming (freq. makers) RESs Slide No. 7 RESERVE All rights reserved.
8 FREQUENCY SIMULATIONS PREPARING THE DATA Preparing the input data: Data Type 1 metered data from the field Measurements from the field using PMUs during relevant events that occurred in the Romanian power system Three sets Set 1of data (event 1) Set 2 of data (event 2) Data: Frequency Angles Powers Set 3 of data (event 3) Slide No. 8 RESERVE All rights reserved.
9 FREQUENCY SIMULATIONS PREPARING THE DATA Preparing the input data: Data Type 1 metered data from the field Example of event: disconnection of the Greece-Turkey interconnection line on 23 October 2017, has resulted in frequency fluctuations in Romania f[hz] 15 mhz samples Slide No. 9 RESERVE All rights reserved.
10 FREQUENCY SIMULATIONS PREPARING THE DATA Preparing the input data: Data Type 2 load flow and dynamic data Transelectrica provided databases of the Romanian power system Data: Topology Branches Generators Loads Settings Two sets RO-195bus RO-29bus Slide No. 10 RESERVE All rights reserved.
11 Hz [sc] NODE FREQUENCY GEN1 Unit : Hz s FREQUENCY SIMULATIONS OFF-LINE Input data Software tools Results Romanian pow.sys. Eurostag Report on network codes validation Models and algorithms Setsof data (events) DOME RoCoF Control Primary Control AGC Control Slide No. 11 RESERVE All rights reserved.
12 FREQUENCY SIMULATIONS REAL-TIME Simulating frequency control by means of the real-time simulator Polito Line1: Rosiori-Mukacevo(Ukr) Line 4: Portile de Fier-Djerdap(SB) WIT Line 2: Nadab-Bekescsaba(HU) Line 3: Arad-Sandorfalva(HU) UPB Line 5: Tantareni-Kozlodui 1(BG) Line 6: Tantareni-Kozlodui 2 (BG) Line7: Rahman-Dobrudja(BG) Line 8: Stupina-Varna(BG) Metered data Metered data Metered data Real-Time Network codes related simulations RoCoF control Secondary freqency control... Network model - Topology - Branch parameters - Generators - Loads - Set-point values Network model Slide No. 12 RESERVE All rights reserved.
13 Frequency Control related Simulations Voltage Control related Simulations Achievements and Next Steps Slide No. 13 RESERVE All rights reserved.
14 OUTLINE OF THE WORK FOR VOLTAGE CONTROL Why? To validate the network codes, customized for voltage control in distribution systems, proposed in the project What? How? On-line simulations and stand-alone off-line and real-time simulations Using the databases of various test networks Using the models and algorithms developed by project partners By means of (3) simulation tools Slide No. 14 RESERVE All rights reserved.
15 VOLTAGE SIMULATIONS SCENARIO PLANS Scenarios for voltage control related network codes Decentralized voltage control Powerfactorrelated voltage control Dynamic stability margins Requirements for power inverters in distributionsystems Slide No. 15 RESERVE All rights reserved.
16 VOLTAGE SIMULATIONS OFF-LINE Input data Software tool 6 Network data sets Technologies Demand Historical Data RES Historical Data UCD 3-Phase Optimal Power Flow Tool UCD Scenario Generation Tool Volt-VAR Curves for decentralized online optimization in LV grids Report on network codes validation Decentralized voltage control Slide No. 16 RESERVE All rights reserved.
17 VOLTAGE SIMULATIONS ON-LINE Smart Measuring 5G Communication System Volt-VAR Curves for decentralized online optimization in LV grids Control Signals Slide No. 17 RESERVE All rights reserved.
18 OFF-LINE SIMULATION: VOI CONCEPT Input data Software tool Results Test network data Bode Diagram VOI controlled impedances Report on network codes validation Virtual output Impedance (VoI) controller and inverter model Frequency (Hz) Z inv Z Grid Inverter characteristics V Inv V grid Slide No. 18 RESERVE All rights reserved.
19 REAL-TIME SIMULATION: VOI CONCEPT Input data Test network data Software tool OPAL-RT Report on network codes validation Virtual output Impedance (VoI) controller and inverter model Z inv Z Grid Inverter characteristics V Inv V grid WSI based Controller!!!Validation Slide No. 19 RESERVE All rights reserved.
20 Frequency Control related Simulations Voltage Control related Simulations Achievements and Next Steps Slide No. 20 RESERVE All rights reserved.
21 ACHIEVEMENTS AND NEXT STEPS Done Databases were prepared, and relevant real events were analysed Implementation of the models and algorithms in the non-realtime stand-alone simulators In Progress Simulations to validate the concepts are in progress Validating the concepts and forwarding the results to WPs Tobe done Define more diverse scenarios to cover better the real situations in the power systems Expanding the simulations on the real-time simulators Slide No. 21 RESERVE 2016 All rights reserved.
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