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首页> 外文期刊>International Journal of Electrical Power & Energy Systems >Robust overlapping load frequency output feedback control of multi-area interconnected power systems
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Robust overlapping load frequency output feedback control of multi-area interconnected power systems

机译:多区域互联电力系统的鲁棒重叠负载频率输出反馈控制

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This paper presents a new approach to the design of robust proportional-integral (PI) load frequency controller (LFC) with overlapping structure in the presence of generation rate constraint (GRC) and time varying communication delays. The power system is decomposed into overlapping areas with tie-lines being the overlapping (shared) parts between the areas. The overlapping LFC design is based on the expansion-contraction principles, where the power system is first expanded in such a way as to decouple the areas from each other. Then, for obtaining an appropriate level of performance, robust local stabilising PI controllers are designed for each of the decoupled areas using an iterative linear matrix inequality (ILMI) algorithm such that asymptotic stability with a minimal H-infinity performance level is achieved. Finally, the designed robust local controllers are contracted (transformed) to a robust overlapping LFC for implementation on the multi-area power system. Although the approach is applicable to multi-area power systems, a time-delay three-area interconnected power system experiencing communication delays is considered in this paper. Simulation results under different scenarios clearly illustrate an improved performance obtained with the overlapping structured LFC of this paper compared with existing decentralized LFCs. Crown Copyright (C) 2017 Published by Elsevier Ltd. All rights reserved.
机译:本文提出了一种新的方法,用于在存在发电速率约束(GRC)和时变通信延迟的情况下,具有重叠结构的鲁棒比例积分(PI)负载频率控制器(LFC)的设计。电力系统被分解为重叠区域,联络线为区域之间的重叠(共享)部分。重叠的LFC设计基于扩展-收缩原理,其中首先以一种使区域彼此分离的方式扩展电源系统。然后,为了获得适当的性能水平,使用迭代线性矩阵不等式(ILMI)算法为每个解耦区域设计了鲁棒的局部稳定PI控制器,从而实现了具有最小H无限性能水平的渐近稳定性。最后,将设计的鲁棒本地控制器收缩(转换)为鲁棒的重叠LFC,以在多区域电力系统上实现。尽管该方法适用于多区域电力系统,但本文考虑了存在通信延迟的时滞三区域互连电力系统。在不同情况下的仿真结果清楚地表明,与现有的分散式LFC相比,本文的重叠结构LFC所获得的性能有所提高。 Crown版权所有(C)2017,由Elsevier Ltd.出版。保留所有权利。

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