论文标题

用于建模大型电源系统的网络HIL模拟系统

An Networked HIL Simulation System for Modeling Large-scale Power Systems

论文作者

Xie, Fuhong, McEntee, Catie, Zhang, Mingzhi, Lu, Ning, Ke, Xinda, Vallem, Mallikarjuna R., Samaan, Nader

论文摘要

本文介绍了用于建模大型电源系统的网络硬件(HIL)模拟系统。近年来,研究人员为电力系统开发了许多HIL测试系统。这些测试系统可以对电源电子系统的微秒动态响应以及传输和分配网格的毫秒瞬变进行建模。通过将单个HIL测试系统集成到HIL测试系统网络中,我们可以以柔性结构的柔性建模分辨率创建大规模的电网数字双胞胎,该分辨率适合各种系统操作条件。这不仅会显着减少开发新技术时对现场测试的需求,而且还大大缩短了模型开发周期。在本文中,我们提出了一个基于网络的OPAL-RT测试系统,用于开发传输 - 分布协调性VAR调节技术,以说明系统设置,不同的HIL模拟系统之间的通信需求以及系统连接机制。说明了通信延迟,信息交换周期和计算延迟的影响。仿真结果表明,网络HIL测试系统的性能令人满意。

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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