传输延迟下信息物理系统的稳定性分析

Nezar M. Alyazidi, Yousif Ahmed Al-Wajih, M. Mahmoud, Mutaz M. Hamdan
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引用次数: 0

摘要

随着电网与网络的紧密结合,有限的带宽和分组延迟对电力系统性能的负面影响迅速扩大。提出的多区域互联电力系统由四个区域组成,每个区域包括火力发电厂和水力发电厂。本文研究了具有循环通信协议的网络物理系统在混合网络攻击和负载变化下的稳定性分析问题。目标是使用静态反馈控制器稳定多区域互联电力系统(MAIPS),同时最小化定义的性能函数。然后,在考虑延迟持续时间和频率的预定限制的情况下,表征了系统遭受传输延迟时MAIPS的稳定性。我们的研究结果表明,时间延迟会影响系统的稳定性,选择适当的采样间隔是保证系统稳定性的必要条件。最后,以三个区域的互联电力系统为例,通过多个场景验证了所提方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stability Analysis of Cyber-physical System Under Transmission Delay
With the intimate integration of power grids and cyber networks, limited bandwidth and packet delay have a rapidly expanding negative impact on power system performance. The presented multi-area interconnected power system consists of four areas, each including thermal and hydro-generation plants. This paper investigates the stability analysis problem for cyber-physical systems with a round-robin communication protocol under mixed cyberattacks and load changes. The objective is to stabilize a multi-area interconnected power system (MAIPS) using a static feedback controller while minimizing the defined performance function. Then, the stability of the MAIPS is characterized when the system is subjected to a transmission delay while considering predetermined limits for the duration and the frequency of the delay. Our findings indicate that time delays can influence system stability and that choosing an appropriate sampling interval is necessary to ensure the stability of the system. Finally, an illustrative example of three areas of interconnected power systems with several scenarios is presented to verify the effectiveness of the proposed method.
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