Passive Control Tolerant to Sensing Faults in dynamic compensation devices - SVC through a hybrid strategy

IF 0.4 Q4 ENGINEERING, MULTIDISCIPLINARY
J. Ramírez, L. Ortiz, A. Águila
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引用次数: 2

Abstract

For this research, a passive fault tolerant control system is developed for a static reactive compensator coupled to a microgrid in connected mode, oriented to those faults that result as a consequence of common damages in their sensing systems. The proposed method uses a robust optimal controller by H and artificial neural networks as a nonlinear estimation method. Simulations, validation, plant identification and controller design are carried out using a microgrid Benchmark system, programmed in Matlab/Simulink. The research shows valuable results such as: the improvement in the reliability and resilience of static compensators against sensing failures, improvements in the behavior of the output signal of the static compensator controller exposed to sensing failures and the decrease in error with respect to classic controller.
基于混合策略的动态补偿装置的被动容错控制——SVC
在本研究中,针对静态无功补偿器在微电网连接模式下的常见故障,开发了一种无源容错控制系统。该方法采用基于H的鲁棒最优控制器和人工神经网络作为非线性估计方法。利用Matlab/Simulink编写的微电网基准系统进行了仿真、验证、对象识别和控制器设计。研究结果表明:静态补偿器在感知故障时的可靠性和弹性得到了提高,静态补偿器控制器在感知故障时输出信号的行为得到了改善,与传统控制器相比误差减小。
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来源期刊
Ingenius-Revista de Ciencia y Tecnologia
Ingenius-Revista de Ciencia y Tecnologia ENGINEERING, MULTIDISCIPLINARY-
CiteScore
0.90
自引率
0.00%
发文量
11
审稿时长
12 weeks
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