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Robust Decentralized LPV Control for Transient Stability of Power Systems

机译:电力系统暂态稳定的鲁棒分散LPV控制

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In daily operation of power systems, transient stability is targeted by designing local standard controllers for narrow operating ranges of any generating node. If deviations due to disturbances or a higher share of (uncertain) renewable energy occur, exemption routines are necessary for returning to nominal operation. This paper proposes a method for synthesizing local robust multivariable controllers such that the interaction between the grid nodes is explicitly considered. It is shown that variably parametrized controllers in conjunction with linear-parameter-varying models of the grid nodes can consistently stabilize the system. Since the control architecture is nevertheless decentralized, the design effort grows moderately with the size of the power system.
机译:在电力系统的日常运行中,通过为任何发电节点的狭窄运行范围设计本地标准控制器来实现瞬态稳定性。如果出现由于干扰或较高比例的(不确定的)可再生能源引起的偏差,则必须执行豁免程序才能恢复正常运行。本文提出了一种用于合成局部鲁棒多变量控制器的方法,从而明确考虑了网格节点之间的相互作用。结果表明,可变参数化的控制器与网格节点的线性参数变化模型结合可以使系统稳定。由于控制架构仍然是分散的,因此设计工作随电源系统的大小而适度增长。

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