智能电网反馈线性化分布式控制方案的鲁棒性分析

Abdallah K. Farraj, Eman M. Hammad, D. Kundur
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引用次数: 3

摘要

反馈线性化分布式控制方案最近被提出用于电力系统发生物理故障后的稳定。研究了反馈线性化分布式控制器在非理想实际测量、通信和存储约束条件下的性能。这项工作研究了采样频率、量化深度、通信延迟、信噪比和外部电源限制对控制器性能的影响。这项工作的结果详细说明了反馈线性化控制器在这些不同的实际限制下在新英格兰39母线电力系统中的性能和有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Robustness analysis of feedback linearization distributed control schemes in smart grid systems
Feedback linearization distributed control schemes have recently been proposed to stabilize power systems after the occurrence of a physical fault. This paper investigates the performance of feedback linearization distributed controllers in the presence of non-ideal practical measurement, communication and storage constraints. This work investigates the impact of sampling frequency, quantization depth, communication latency, signal-to-noise ratio, and limits on external power on the performance of the controllers. Results of this work detail the performance and effectiveness of the feedback linearization controllers in the New England 39-bus power system under these different practical limitations.
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