Evaluation of the Communication Delay in a Hybrid Real-Time Simulator for Weak Grids

Real-time Simulation (RTS) is one of the effective means via which to study device level or system level dynamics, such as power converter online testing, evaluation, and control, and power system stability analysis. The RTS -enabled design-chain offers a time -effective, low-cost, and fail-safe dev...

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Main Authors: Sisi Pan, Wei Jiang, Ming Li, Hua Geng, Jieyun Wang
Format: Article
Language:English
Published: MDPI AG 2022-03-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/15/6/2255
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author Sisi Pan
Wei Jiang
Ming Li
Hua Geng
Jieyun Wang
author_facet Sisi Pan
Wei Jiang
Ming Li
Hua Geng
Jieyun Wang
author_sort Sisi Pan
collection DOAJ
description Real-time Simulation (RTS) is one of the effective means via which to study device level or system level dynamics, such as power converter online testing, evaluation, and control, and power system stability analysis. The RTS -enabled design-chain offers a time -effective, low-cost, and fail-safe development process. As the penetration of renewable energy is becoming higher, the demand in hybrid system real-time simulation becomes imperative, where fast-dynamic device level power converters and slow -dynamic large -scale power systems are simulated at the same time. This paper introduces a novel hybrid real-time simulation architecture based on the central processing unit (CPU) and the field-programmable gate array (FPGA). Compared with the off-the-shelf power system real-time simulation system, it offers both wide time scale simulation and high accuracy. The multi-time scale model can perform electromechanical electromagnetic transient hybrid simulation, which can be applied to the research of power systems penetrated with power converters. In the proposed simulation platform, the communication delay is introduced when different RTS platforms exchange real-time data. The communication delay should be considered in the stability analysis of the grid-connected inverters in a weak grid environment. Based on the virtual impedance characteristic formed by the control loop with and without communication delay, the impedance characteristics are analyzed and inter-simulator delay impacts are revealed in this paper. Theoretical analysis indicates that the communication delay, contrary to expectation, can improve the virtual impedance characteristics of the system. With the same hardware simulation parameters, the grid-converter system is verified on both the Typhoon system alone and the Typhoon-dSPACE-SpaceR hybrid simulation platform. The THD value of grid current in a weak grid environment that works in the Typhoon system is 4.98%, and 2.38% in the Typhoon-dSPACE-SpaceR hybrid simulation platform. This study eventually reveals the fact that the inter-simulation delay creates the illusion that the control system built in the novel hybrid real-time simulation is more stable under weak grid conditions.
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spelling doaj.art-15402560b2084db0aea40eb0a26328cf2023-11-24T01:05:53ZengMDPI AGEnergies1996-10732022-03-01156225510.3390/en15062255Evaluation of the Communication Delay in a Hybrid Real-Time Simulator for Weak GridsSisi Pan0Wei Jiang1Ming Li2Hua Geng3Jieyun Wang4Department of Electrical Engineering, Yangzhou University, Yangzhou 225000, ChinaDepartment of Electrical Engineering, Yangzhou University, Yangzhou 225000, ChinaDepartment of Automation, Tsinghua University, Beijing 100000, ChinaDepartment of Automation, Tsinghua University, Beijing 100000, ChinaDepartment of Electronic and Electrical Engineering, Faculty of Engineering, University of Strathclyde, Glasgow G1 1XQ, UKReal-time Simulation (RTS) is one of the effective means via which to study device level or system level dynamics, such as power converter online testing, evaluation, and control, and power system stability analysis. The RTS -enabled design-chain offers a time -effective, low-cost, and fail-safe development process. As the penetration of renewable energy is becoming higher, the demand in hybrid system real-time simulation becomes imperative, where fast-dynamic device level power converters and slow -dynamic large -scale power systems are simulated at the same time. This paper introduces a novel hybrid real-time simulation architecture based on the central processing unit (CPU) and the field-programmable gate array (FPGA). Compared with the off-the-shelf power system real-time simulation system, it offers both wide time scale simulation and high accuracy. The multi-time scale model can perform electromechanical electromagnetic transient hybrid simulation, which can be applied to the research of power systems penetrated with power converters. In the proposed simulation platform, the communication delay is introduced when different RTS platforms exchange real-time data. The communication delay should be considered in the stability analysis of the grid-connected inverters in a weak grid environment. Based on the virtual impedance characteristic formed by the control loop with and without communication delay, the impedance characteristics are analyzed and inter-simulator delay impacts are revealed in this paper. Theoretical analysis indicates that the communication delay, contrary to expectation, can improve the virtual impedance characteristics of the system. With the same hardware simulation parameters, the grid-converter system is verified on both the Typhoon system alone and the Typhoon-dSPACE-SpaceR hybrid simulation platform. The THD value of grid current in a weak grid environment that works in the Typhoon system is 4.98%, and 2.38% in the Typhoon-dSPACE-SpaceR hybrid simulation platform. This study eventually reveals the fact that the inter-simulation delay creates the illusion that the control system built in the novel hybrid real-time simulation is more stable under weak grid conditions.https://www.mdpi.com/1996-1073/15/6/2255hybrid real-time simulatorcommunication delayvirtual impedance characteristic
spellingShingle Sisi Pan
Wei Jiang
Ming Li
Hua Geng
Jieyun Wang
Evaluation of the Communication Delay in a Hybrid Real-Time Simulator for Weak Grids
Energies
hybrid real-time simulator
communication delay
virtual impedance characteristic
title Evaluation of the Communication Delay in a Hybrid Real-Time Simulator for Weak Grids
title_full Evaluation of the Communication Delay in a Hybrid Real-Time Simulator for Weak Grids
title_fullStr Evaluation of the Communication Delay in a Hybrid Real-Time Simulator for Weak Grids
title_full_unstemmed Evaluation of the Communication Delay in a Hybrid Real-Time Simulator for Weak Grids
title_short Evaluation of the Communication Delay in a Hybrid Real-Time Simulator for Weak Grids
title_sort evaluation of the communication delay in a hybrid real time simulator for weak grids
topic hybrid real-time simulator
communication delay
virtual impedance characteristic
url https://www.mdpi.com/1996-1073/15/6/2255
work_keys_str_mv AT sisipan evaluationofthecommunicationdelayinahybridrealtimesimulatorforweakgrids
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AT mingli evaluationofthecommunicationdelayinahybridrealtimesimulatorforweakgrids
AT huageng evaluationofthecommunicationdelayinahybridrealtimesimulatorforweakgrids
AT jieyunwang evaluationofthecommunicationdelayinahybridrealtimesimulatorforweakgrids