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PV system fuzzy logic MPPT method and PI control as a charge controller

机译:光伏系统模糊逻辑MPPT方法和PI控制作为充电控制器

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This paper puts forward to Fuzzy Logic MPPT (Maximum Power Point Tracking) method applied photovoltaic panel sourced boost converter, under variable temperature (25-60 degrees C) and irradiance (700-1000 W/m2) after that the PI control was applied buck converter to behave as a charge controller. The voltage and current of PV panels are nonlinear and they depend on environmental conditions such as temperature and irradiance. Variable environmental conditions cause to change voltage, current and also cause to change maximum available power of PV panels. To increase efficiency and decrease payback period of the system, it needs to operate PV panels at maximum power point (MPP). Under any environment conditions there is unique MPP. To operate PV panels at that point (MPP) there are many MPPT method in literature, FLC MPPT method was preferred in this study because, its rapid response to changing environmental conditions and not affecting by change of circuit parameters. The accuracy of FLC MPPT method used in this system to find MPP changes, from 94.8% to 99.4%. To charge a battery there are two traditional methods which are constant current (CC), and constant voltage (CV) methods. For fast charging with low loss constant current and voltage source is a need. One of the methods providing constant is PI control which used in this study. PI control is not only well developed and a simple technique but also it provides satisfactory results. The goal of this study is operating PV panel at maximum power point under variable environment conditions to increase efficiency and reduce cost and also provide appropriate current and voltage for charging battery to charge quickly, reduce losses and also increase life cycle of battery. This system was established and analyzed in MATLAB/Simulink.
机译:提出了PI控制降压后在可变温度(25-60摄氏度)和辐照度(700-1000 W / m2)下应用光伏面板升压变换器的模糊逻辑MPPT(最大功率点跟踪)方法。转换器充当充电控制器。光伏板的电压和电流是非线性的,它们取决于环境条件,例如温度和辐照度。可变的环境条件会导致电压,电流发生变化,还会导致光伏电池板的最大可用功率发生变化。为了提高效率并减少系统的投资回收期,它需要在最大功率点(MPP)下运行光伏电池板。在任何环境条件下,都有唯一的MPP。为了在那时操作光伏面板(MPP),文献中有许多MPPT方法,在本研究中首选FLC MPPT方法,因为它对变化的环境条件具有快速响应,并且不受电路参数变化的影响。该系统中用于查找MPP变化的FLC MPPT方法的准确性从94.8%降至99.4%。为电池充电有两种传统方法,即恒流(CC)和恒压(CV)方法。为了以低损耗进行快速充电,需要恒定电流和电压源。提供恒定的方法之一是本研究中使用的PI控制。 PI控制不仅得到了很好的开发和简单的技术,而且还提供了令人满意的结果。这项研究的目标是在可变的环境条件下以最大功率点运行PV面板,以提高效率并降低成本,并提供适当的电流和电压以使电池快速充电,减少损耗并延长电池的使用寿命。在MATLAB / Simulink中建立并分析了该系统。

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