电力系统
半实物仿真
传输(电信)
计算机科学
传动系统
网格
电网连接
数据交换
功率(物理)
比例(比率)
分布式计算
模拟
工程类
电压
电信
电气工程
物理
几何学
数学
量子力学
数据库
作者
Fuhong Xie,Catie McEntee,Mingzhi Zhang,Ning Lü,Xinda Ke,Mallikarjuna R. Vallem,Nader Samaan
标识
DOI:10.48550/arxiv.2002.07257
摘要
This paper presents a network hardware-in-the-loop (HIL) simulation system for modeling large-scale power systems. Researchers have developed many HIL test systems for power systems in recent years. Those test systems can model both microsecond-level dynamic responses of power electronic systems and millisecond-level transients of transmission and distribution grids. By integrating individual HIL test systems into a network of HIL test systems, we can create large-scale power grid digital twins with flexible structures at required modeling resolution that fits for a wide range of system operating conditions. This will not only significantly reduce the need for field tests when developing new technologies but also greatly shorten the model development cycle. In this paper, we present a networked OPAL-RT based HIL test system for developing transmission-distribution coordinative Volt-VAR regulation technologies as an example to illustrate system setups, communication requirements among different HIL simulation systems, and system connection mechanisms. Impacts of communication delays, information exchange cycles, and computing delays are illustrated. Simulation results show that the performance of a networked HIL test system is satisfactory.
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