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首页> 外文期刊>International Journal of Electrical Power & Energy Systems >Decentralized high order sliding mode control of multimachine power systems
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Decentralized high order sliding mode control of multimachine power systems

机译:多机动力系统的分散式高阶滑模控制

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In this paper, feedback linearization approach and high order sliding mode control are combined to stabilize and decentralize nonlinear multimachine power systems. The design control permits to decentralize and handle the nonlinearities of power systems model by using the feedback linearization approach and HOSM control to each generating unit in the global system for stabilizing the system. Each machine is modeled as an independent uncertain dynamic subsystem where the uncertainty is a disturbance that represents the effects of the rest of the system on that particular machine. This disturbance is estimated by numerical method. A local high order sliding mode stabilizer is designed to regulate the machine angle of each generating unit under high level external disturbances. This method is illustrated with a three-machines infinite bus power system. Simulations show that the proposed (DHOSMC) provides high-performance in dynamic characteristics and its robustness with regard to external disturbance.
机译:本文将反馈线性化方法和高阶滑模控制相结合以稳定和分散非线性多机电力系统。通过使用反馈线性化方法和对全局系统中每个发电单元的HOSM控制,设计控制可以分散和处理电力系统模型的非线性,以使系统稳定。每台机器都被建模为一个独立的不确定动态子系统,其中不确定性是一个干扰,代表了系统其余部分对该特定机器的影响。该干扰通过数值方法来估计。设计了本地高阶滑模稳定器,以在高水平外部干扰下调节每个发电机组的机器角度。用三台机器的无限总线电源系统说明了此方法。仿真表明,所提出的(DHOSMC)在动态特性方面具有高性能,并且在外部干扰方面具有很强的鲁棒性。

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