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Adaptive Sliding Mode Control Based on Equivalence Principle and Its Application to Chaos Control in a Seven-Dimensional Power System

机译:基于等效原理的自适应滑模控制及其在七维电力系统中混沌控制的应用

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The main purpose of the paper is to control chaotic oscillation in a complex seven-dimensional power system model. Firstly, in view that there are many assumptions in the design process of existing adaptive controllers, an adaptive sliding mode control scheme is proposed for the controlled system based on equivalence principle by combining fixed-time control and adaptive control with sliding mode control. The prominent advantage of the proposed adaptive sliding mode control scheme lies in that its design process breaks through many existing assumption conditions. Then, chaotic oscillation behavior of a seven-dimensional power system is analyzed by using bifurcation and phase diagrams, and the proposed strategy is adopted to control chaotic oscillation in the power system. Finally, the effectiveness and robustness of the designed adaptive sliding mode chaos controllers are verified by simulation.
机译:本文的主要目的是控制复杂的七维电力系统模型中的混沌振荡。首先,考虑到在现有自适应控制器的设计过程中存在许多假设,通过用滑模控制组合固定时间控制和自适应控制,为基于等效原理的受控系统提出了自适应滑模控制方案。所提出的自适应滑模控制方案的突出优点在于其设计过程突破了许多现有假设条件。然后,通过使用分叉和相图分析七维功率系统的混沌振荡行为,并采用所提出的策略来控制电力系统中的混沌振荡。最后,通过模拟验证了设计的自适应滑模混沌控制器的有效性和鲁棒性。

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