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Simulation, optimization and performance analysis of an analog, easy to implement, perturb and observe MPPT technique to be used in a 1.5 KWp photovoltaic system

机译:模拟,优化和性能分析,适用于1.5 KWp光伏系统的模拟,易于实现,干扰和观察的MPPT技术

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As a basic Maximum Power Point Tracking (MPPT) technique, the perturb and observe (P&O) algorithm has been widely considered in the literature related to photovoltaic systems optimization. While its principal seems primarily suited for a digital implementation, the analog version analysis was relatively neglected. Moreover, very few results have been presented in both cases for a significant performance analysis in presence of static and dynamic solicitations, related to the main field perturbations such as solar irradiance intensity, temperature, shading and load variations. Hence, this paper is aimed to undergo, through simulation in a Matlab/Simulink environment, a systematic performance evaluation of an optimized, easy to implement, analog P&O MPPT algorithm. The behaviour of the MPPT stage of interest, is investigated under a multitude of the various working conditions quoted above, with either topologies based on a buck or a boost power DC-DC converter. Significant results in this scope are presented, before integrating the designed MPPT stage in a real photovoltaic chain application. The latter consists of a photovoltaic solar shelter equipped with a stand alone solar battery charging terminal for electric scooters. This work being part of a project which final objective is to realize and implement, by local means, specified operational demonstrators of renewable energy standalone systems, to be sited at the ongoing building yard of the new “reduced emission” town project of Boughzoul, located at the middle of the steppic highlands of Algeria (170 Kms south of Algiers). This application is aimed to ensure onsite mobility, to a limited number of individuals among the working personnel, and introduce the concept of non polluting transport means.
机译:作为基本的最大功率点跟踪(MPPT)技术,扰动和观测(P&O)算法已在与光伏系统优化相关的文献中得到了广泛考虑。虽然其原理似乎主要适合于数字实现,但相对而言,模拟版本分析却被忽略了。此外,在两种情况下,在涉及静态和动态诱因的情况下进行重大性能分析的结果很少,这些结果与诸如太阳辐照强度,温度,阴影和负载变化等主要场扰动有关。因此,本文旨在通过在Matlab / Simulink环境中进行仿真,对经过优化的,易于实现的模拟P&O MPPT算法进行系统性能评估。在上面引用的多种工作条件下,使用基于降压或升压功率DC-DC转换器的拓扑结构,研究了感兴趣的MPPT级的行为。在将设计的MPPT阶段集成到实际的光伏链应用中之前,先介绍了此范围内的重要结果。后者由一个光伏太阳能庇护所组成,该庇护所配备了一个用于电动踏板车的独立太阳能电池充电终端。这项工作是一个项目的一部分,该项目的最终目标是通过本地手段实现和实施可再生能源独立系统的特定操作演示者,该演示者将位于位于Boughzoul的新的“减排”城镇项目的正在进行中的建筑工地,该项目位于位于阿尔及利亚的草原高地中部(阿尔及尔以南170公里)。此应用程序旨在确保现场流动性,以确保工作人员中数量有限的人员,并引入了无污染运输手段的概念。

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