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A genetic algorithm optimized MPPT controller for a PV system with DC-DC boost converter

机译:具有DC-DC升压转换器的光伏系统的遗传算法优化MPPT控制器

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Because of the non-linearity of the P-V characteristic of the Photovoltaic (PV) panel, a power electronic interface is mandatory to reach the desired fixed voltage level. This paper deals with the design of a PID controller in order to control a DC-DC boost converter in the PV system. For the design of the whole system, the used approach is based on the Energetic Macroscopic Representation (EMR). This technique goes from a complex command to a simpler one and is characterized by the use of cascading of one or more controllers. The three parameters of the controller are tuned by using Genetic Algorithm (GA). Both of the system responses using PID MPPT controller tuned by genetic algorithm and PID controller tuned by Pole Placement (PP) are tested when fast changing the solar irradiation is experienced. Finally, in order to obtain the best system performance, Perturb and Observe (P&O) MPPT method is applied to generate the output voltage reference Vref. The simulation results are compared in terms of mean squared error (MSE) criterion, percentage overshoot and rising time. The results show that parameters tuned by GA PID controller gives better performance.
机译:由于光伏(PV)面板的P-V特性存在非线性,因此必须使用功率电子接口才能达到所需的固定电压水平。本文研究PID控制器的设计,以控制光伏系统中的DC-DC升压转换器。对于整个系统的设计,所使用的方法基于能量宏观表示(EMR)。该技术从复杂的命令变成了简单的命令,其特征是使用一个或多个控制器的级联。控制器的三个参数通过使用遗传算法(GA)进行调整。当经历快速变化的太阳辐射时,将测试使用遗传算法调整的PID MPPT控制器和通过极点放置(PP)调整的PID控制器的系统响应。最后,为了获得最佳的系统性能,采用了摄动观察(P&O)MPPT方法来生成输出参考电压Vref。根据均方误差(MSE)准则,超调百分比和上升时间对仿真结果进行比较。结果表明,GA PID控制器对参数的调节具有较好的性能。

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