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A robust centralized SMES controller design based on WAMS considering system and communication delay uncertainties

机译:考虑系统和通信延迟不确定性的基于WAMS的鲁棒集中式SMES控制器设计

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摘要

It is well known that the communication delay due to the phasor measurement in wide area monitoring system (WAMS) as well as various system operating conditions such as heavy line flows and unpredictable network structures, may deteriorate the wide-area stabilizing control effect. To overcome this problem, the inverse input and output multiplicative model is proposed to represent unstructured uncertainties due to system operations and communication delay in the robust centralized damping controller design of superconducting magnetic energy storage (SMES) based on WAMS. The structure of centralized controller for SMES is the practical lst-order lead/lag compensator. To automatically tune the control parameters, the optimization problem based on the enhancement of damping performance and system robust stability margin is achieved by particle swarm optimization. Simulation studies in the West Japan six-area interconnected system confirm that the proposed robust SMES centralized controller is superior to the conventional SMES centralized controller in terms of damping performance and robustness against system and time delay uncertainties.
机译:众所周知,由于广域监视系统(WAMS)中的相量测量以及各种系统操作条件(如繁重的线路流量和不可预测的网络结构)导致的通信延迟可能会使广域稳定控制效果恶化。为了克服这个问题,在基于WAMS的超导磁能存储(SMES)的鲁棒集中阻尼控制器设计中,提出了逆输入和输出乘积模型来表示由于系统操作和通信延迟而引起的非结构化不确定性。 SMES集中控制器的结构是实用的一阶超前/滞后补偿器。为了自动调整控制参数,通过粒子群算法解决了基于阻尼性能增强和系统鲁棒稳定性裕度的优化问题。在日本西部六区域互连系统中进行的仿真研究证实,所提出的鲁棒SMES集中控制器在阻尼性能,针对系统和时延不确定性的鲁棒性方面优于常规SMES集中控制器。

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