Cyber-Physical Testbed Co-Simulation Real-Time: Normal and Abnormal System Frequency Response

被引:6
|
作者
Riquelme-Dominguez, Jose Miguel [1 ,2 ]
Gonzalez-Longatt, Francisco [3 ]
Melo, Andre Felipe Silva [2 ]
Rueda, Jose Luis [4 ]
Palensky, Peter [5 ]
机构
[1] Univ Politcn Madrid, Dept Elect Engn, Madrid 28040, Spain
[2] Univ Seville, Dept Elect Engn, Seville 41092, Spain
[3] Loughborough Univ, Ctr Renewable Energy Syst Technol CREST, Loughborough LE11 3GB, England
[4] Delft Univ Technol, Dept Elect Sustainable Energy, NL-2600 AA Delft, Netherlands
[5] Delft Univ Technol, Intelligent Elect Power Grids, NL-2600 AA Delft, Netherlands
关键词
ANSI C37.118; Co-simulation; hardware-in-the-loop; low inertia power systems; real-time; system frequency response;
D O I
10.1109/TIA.2023.3342764
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Future carbon-neutral power systems impose many challenges; one is the urgent need for a simulation platform that allows replicating the complex systems' actual dynamic performance. This paper shows the results of implementing a cyber-physical testbed co-simulation in real-time to analyse the system frequency response considering primary frequency control and emergency frequency control: under-frequency load-shedding (UFLS) protection schemes. The proposed testbed uses a physical layer of two real-time simulators from different vendors in a closed loop, Opal-RT OP4510 and Typhoon HIL 604, being the first simulator for test system modelling and the remainder used to implement the UFLS protection scheme. Two connections of the real-time simulators are considered: physical connection using wires to exchange analogue signals and cybernetic digital communication using ANSI C37.118 communication protocol. The cybernetic layer of the testbed models a test system, controls the real-time simulation, and implements digital communication between the simulators. A modified version of the P.M. Anderson 9-bus systems is used for testing purposes, including phasor measurement units (PMUs). Results of the real-time simulation show the appropriate performance of the proposed testbed.
引用
收藏
页码:2643 / 2652
页数:10
相关论文
共 50 条
  • [31] A Real-time Cyber-Physical System for Indoor Environment Monitoring
    Mi, Weihong
    Zhou, Nanshu
    Jin, Yaohui
    2016 INTERNATIONAL CONFERENCE ON MANUFACTURING SCIENCE AND INFORMATION ENGINEERING (ICMSIE 2016), 2016, : 379 - 385
  • [32] A Monadic Co-simulation Model for Cyber-physical Production Systems
    Craciunean, Daniel-Cristian
    INTERNATIONAL JOURNAL OF ADVANCED COMPUTER SCIENCE AND APPLICATIONS, 2022, 13 (09) : 552 - 557
  • [33] On the Assessment of Cyber Risks and Attack Surfaces in a Real-Time Co-Simulation Cybersecurity Testbed for Inverter-Based Microgrids
    Gupta, Kirti
    Sahoo, Subham
    Panigrahi, Bijaya Ketan
    Blaabjerg, Frede
    Popovski, Petar
    ENERGIES, 2021, 14 (16)
  • [34] Cyber-physical structural optimization using real-time hybrid simulation
    Zhang, Ruiyang
    Phillips, Brian M.
    Fernandez-Caban, Pedro L.
    Masters, Forrest J.
    ENGINEERING STRUCTURES, 2019, 195 : 113 - 124
  • [35] Real-Time Simulation Support for Runtime Verification of Cyber-Physical Systems
    Zheng, Xi
    Julien, Christine
    Chen, Hongxu
    Podorozhny, Rodion
    Cassez, Franck
    ACM TRANSACTIONS ON EMBEDDED COMPUTING SYSTEMS, 2017, 16 (04)
  • [36] Real-Time Scheduling in Cyber-Physical Systems
    Chen, Yanwen
    Chen, Yixiang
    CONTROL ENGINEERING AND APPLIED INFORMATICS, 2011, 13 (03): : 41 - 50
  • [37] Cyber-physical Framework for System Frequency Response using Real-time simulation Phasor Measurement Unit based on ANSI C37.118
    Castro Martinez, Jesus
    Gonzalez-Longatt, Francisco
    Rodriguez Amenedo, Jose Luis
    Tricarico, Gioacchino
    2023 IEEE POWER & ENERGY SOCIETY GENERAL MEETING, PESGM, 2023,
  • [38] Towards an Assisted Simulation Planning for Co-Simulation of Cyber-Physical Energy Systems
    Schwarz, Jan Soeren
    Steinbrink, Cornelius
    Lehnhoff, Sebastian
    2019 7TH WORKSHOP ON MODELING AND SIMULATION OF CYBER-PHYSICAL ENERGY SYSTEMS (MSCPES), 2019,
  • [39] UnRealTHASC - A Cyber-Physical XR Testbed for Underwater Real-Time Human Autonomous Systems Collaboration
    Surve, Sushrut
    Guo, Jia
    Menezes, Jovan C.
    Tate, Connor
    Jin, Yiting
    Walker, Justin
    Ferrari, Silvia
    2024 33RD IEEE INTERNATIONAL CONFERENCE ON ROBOT AND HUMAN INTERACTIVE COMMUNICATION, ROMAN 2024, 2024, : 196 - 203
  • [40] MODELING AND SIMULATION OF CYBER-PHYSICAL SYSTEMS USING AN EXTENSIBLE CO-SIMULATION FRAMEWORK
    Reitz, Jan
    Osterloh, Tobias
    Rossmann, Juergen
    2022 WINTER SIMULATION CONFERENCE (WSC), 2022, : 1258 - 1267