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Evaluation of Fuzzy Logic based Maximum Power Point Tracking for Photovoltaic Power System

机译:基于模糊逻辑的光伏电力系统的最大功率点跟踪评价

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Efficient extraction of available power from photovoltaic system is a mandatory task that needs extraction techniques. A number of maximum power point tracking (MPPT) techniques has been presented of which conventional techniques like perturb and observe (P&O), incremental conductance (InCond) and hill-climbing are widely in use mainly because of simple implementation and less complexity; however they fail to track the right perturbation direction for rapid change atmospheric conditions and oscillations during steady-sate operation. Different methods has been devised to improve the drawbacks, among them fuzzy logic based technique is the one that works well for systems with no accurate mathematical. Thus, in this paper fuzzy logic controller (FLC) based MPPT technique using PV voltage and power variations as input and reference voltage change as output has been proposed and implemented along with P&O method. The simulation results of MPPT trajectory tracking capability, dynamic and steady state responses for variable irradiance revealed superior performance of fuzzy based technique over P&O method.
机译:从光伏系统可用功率的有效提取是需要提取技术的强制性任务。若干最大功率点跟踪(MPPT)的技术已被提出的类似扰动其中常规技术和观察(P&O),增量电导(InCond)和爬山是广泛使用的主要是因为简单的实现方式和更低的复杂性;然而,它们不能稳定SATE操作期间,用于跟踪快速变化的大气条件和振荡右扰动方向。不同的方法已经被设计来改善缺点,其中包括基于模糊逻辑技术是一个没有精确的数学的系统运行良好。因此,使用PV电压和功率变化作为输入,并参考电压变化作为输出已经提出,并用P&O方法一起实现在本文中模糊逻辑控制器(FLC)基于MPPT技术。 MPPT轨迹跟踪能力,动态的和可变的辐照稳态响应的模拟结果表明基于模糊技术在P&O方法的优异的性能。

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