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An UHV Grid Security and Stability Defense System: Considering the Risk of Power System Communication

机译:特高压电网安全稳定防御系统:考虑电力系统通信的风险

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An ultra high voltage (UHV) ac and dc interconnection will become the foundation of China’s future smart grid. Due to the wide spread of interconnected regions, the distance between control stations will increase dramatically. Therefore, the communication system’s reliability and real-time performance will become increasingly crucial. However, failures of the communication system, such as interruptions, latency, and bit error, are inevitable. This paper uses the UHV grid security and stability defense system (SSDS) as an example to analyze its requirements for communication and the impact of communication failure on the system’s performance. The effect of communication latency on the power system’s stability is analyzed quantitatively and qualitatively. Based on this analysis, a framework of an UHV grid SSDS considering the risk of the communication system is proposed. A preliminary power system and communication system co-simulation tool is developed to perform a case study. The case study demonstrates that communication latency in the UHV grid changes the control strategy’s effectiveness due to a delay in executing the control strategy. Furthermore, communication latency will negatively affect the power grid’s stability.
机译:超高压交流和直流互连将成为中国未来智能电网的基础。由于互连区域的广泛分布,控制站之间的距离将急剧增加。因此,通信系统的可靠性和实时性能将变得越来越重要。然而,不可避免的是通信系统的故障,例如中断,等待时间和误码。本文以特高压电网安全稳定防御系统(SSDS)为例,分析其对通信的要求以及通信故障对系统性能的影响。通讯定性对电力系统稳定性的影响进行了定量和定性分析。在此基础上,提出了考虑通信系统风险的特高压电网SSDS框架。开发了初步的电力系统和通信系统协同仿真工具以进行案例研究。案例研究表明,由于执行控制策略的延迟,特高压电网中的通信延迟会改变控制策略的有效性。此外,通信延迟会负面影响电网的稳定性。

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