Analysis of Phasor Data Latency in Wide Area Monitoring and Control Systems

Kun Zhu, J. Song, M. Chenine, L. Nordstrom
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引用次数: 8

Abstract

Synchronized phasor measurement based Wide Area Monitoring and Control (WAMC) system is becoming a reality within international research and development both in academia and industry. Timely and accurate data with high resolutions holds great promise for more responsible and advanced grid control and operation. Currently, most of the research focuses on the different control schemes and applications. A relatively less addressed aspect is the dependency of the WAMC system on the performance of the Information and Communication Technology (ICT) infrastructure, without whose support the projected functionalities of the WAMC systems will be not achieved. Possible delays brought by the complex data transfer and processing processes in WAMC systems are addressed in the first part of this paper. Thereafter, simulations where delayed Phasor measurements are fed to the Static Var Compensator (SVC) are conducted iteratively to detect its maximum tolerated delay. Furthermore, performance requirements for the centralized computation and control actuation are researched and analyzed based on simulation results. It also includes a study on feasibility of compensations using local signal based Power System Stablizers (PSS) in situations with much phasor data delay. The paper is concluded by suggesting ICT architecture for WAMC systems aiming to improve its robustness.
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广域监控系统相量数据延迟分析
基于同步相量测量的广域测控(WAMC)系统在国际学术界和工业界的研究和开发中逐渐成为现实。及时、准确、高分辨率的数据为更负责、更先进的电网控制和运行提供了巨大的希望。目前,大多数研究都集中在不同的控制方案和应用上。一个相对较少涉及的方面是WAMC系统对信息和通信技术(ICT)基础设施性能的依赖,没有这些基础设施的支持,WAMC系统的预期功能将无法实现。本文的第一部分讨论了WAMC系统中复杂的数据传输和处理过程可能带来的延迟。然后,将延迟相量反馈给静态无功补偿器(SVC)进行迭代仿真,以检测其最大容忍延迟。在此基础上,对集中计算和控制驱动的性能要求进行了研究和分析。研究了基于本地信号的电力系统稳定器(PSS)在相量数据延迟较大的情况下进行补偿的可行性。最后提出了WAMC系统的ICT体系结构,以提高其鲁棒性。
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