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A Robust Control method For a DC Motor-Based Photovoltaic Pumping

机译:一种用于直流电动机的光伏泵送的鲁棒控制方法

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This paper deals with the robust control of DC motor based on photovoltaic pumping system. We will use in this work the tools of nonlinear control to increase the yield of a photovoltaic panel and therefore the amount of water pumped. Maximum point tracking an algorithm using Perturb and Observe method with array voltage and current is used to generate the voltage reference which should be the PV panel's operating voltage to get maximum available power.The system is represented into a Takagi-Sugeno (T-S) fuzzy model. Then, the concept of Robust Parallel Distributed Compensation (PDC) is applied to design the control law. The PV current is considered as an exogenous input, and included in an uncertain matrix whose influence on the regulation error is minimized. This means that overall stability analysis is carried out when disturbance is taken into consideration. Control gains are then obtained by solving some set of linear matrix inequalities (LMIs).
机译:本文涉及基于光伏泵送系统的直流电机的鲁棒控制。我们将在这项工作中使用非线性控制的工具,以提高光伏面板的产量,从而增加水量。最大点跟踪使用腹部电压和电流的扰动和观察方法的算法用于产生应为PV面板的工作电压以获得最大可用功率的电压参考。系统表示为Takagi-Sugeno(TS)模糊模型。然后,应用了鲁棒并行分布式补偿(PDC)的概念来设计控制法。 PV电流被认为是外源性输入,并包括在不确定的基质中,其对调节误差的影响最小化。这意味着在考虑干扰时进行总体稳定性分析。然后通过求解一些线性矩阵不等式(LMI)来获得控制增益。

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