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High-Order Block Sliding-Mode Controller for a Synchronous Generator With an Exciter System

机译:带有励磁系统的同步发电机的高阶块滑模控制器

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This paper deals with the design of robust regulation for both angular speed stability enhancement and voltage in synchronous generator machines with an excitation control system. The designed controller is based on the block control technique combined with a sliding-mode (SM) control approach. The block control is used to design a nonlinear sliding manifold with the desired stability property. In order to attenuate the chattering effect which can appear in the presence of the exciter's unmodeled dynamics, a high-order SM algorithm and a robust exact differentiator are employed. The efficiency of the proposed controller, i.e., robustness and high accuracy, is verified via simulations.
机译:本文针对具有励磁控制系统的同步发电机中的角速度稳定性增强和电压的鲁棒调节进行设计。设计的控制器基于结合了滑模(SM)控制方法的块控制技术。块控制用于设计具有所需稳定性的非线性滑动歧管。为了减弱在激励器未建模的动力学情况下可能出现的抖振效应,采用了高阶SM算法和鲁棒的精确微分器。通过仿真验证了所提出的控制器的效率,即鲁棒性和高精度。

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