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Event Trigger Super Twisting Sliding Mode Control for DC Micro Grid With Matched/Unmatched Disturbance Observer

机译:事件触发DC微电网的超级扭转滑模控制,具有匹配/无与伦比的干扰观察者

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摘要

In this paper a novel concept of event triggering control (ETC) for effective resource utilization is proposed for dc microgrid. Matched uncertainty elimination is possible through sliding mode control (SMC) itself as addressed in the literatures. This paper proposes a new approach for suppression of both matched and unmatched uncertainties in grid connected and islanded mode through an integral disturbance observer (IDO) which is designed with super twisting SMC to provide dual filtering phenomena pertaining to system perturbations. The IDO facilitates control algorithm to manage effective event counts during disturbance conditions. The proposed controller is designed in order to regulate DC bus voltage and enhance the microgrid capability to perform stable operation in presence of uncertainties. Chattering free finite time convergent SMC is designed with super twisting reaching law to obtain robust behavior of dc microgrid. Results are compared with power rate reaching SMC, Nonlinear disturbance observer (NDO) based controller and PI controller. In the proposed work event triggering condition is designed first time under super twisting reaching law. Comparative assessment is accomplished in lieu of demonstrating the superior performance of event trigger SMC through MATLAB/Simulink and Typhoon based controller hardware in loop (CHIL) platform.
机译:本文提出了一种用于DC微电网的有效资源利用率的事件触发控制(ETC)的新颖概念。通过在文献中的所有在文献中所说的滑动模式控制(SMC)本身,可以实现匹配的不确定性消除。本文通过整体扰动观察者(IDO)提出了一种新的抑制网格连接和孤岛模式中的匹配和无与伦比的不确定性,该模块扰动观察器(IDO)设计,该扰动观察者(IDO)设计了超扭曲SMC,提供了与系统扰动有关的双滤波现象。 IDO有助于控制算法在干扰条件下管理有效的事件计数。所提出的控制器设计为调节直流总线电压并增强微电网能力,以在存在不确定性的情况下进行稳定运行。喋喋不休的有限时间融合SMC采用超级扭曲到达法设计,以获得DC微电网的鲁棒行为。将结果与达到SMC,非线性干扰观察器(NDO)控制器和PI控制器的功率率进行比较。在拟议的工作事件触发条件是在超级扭曲到达法下首次设计。实现了比较评估,以代替展示事件触发SMC的卓越性能通过MATLAB / SIMULINK和Typhoon基于Typhoon基于Woole(Chil)平台的控制器硬件。

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