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Genetic algorithm based maximum power tracking in solar power generation

机译:基于遗传算法的太阳能发电最大功率跟踪

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This paper presents genetic algorithm (GA) based maximum power point tracking (MPPT) for photovoltaic (PV) array integrated with battery storage unit (BSU) as power generation unit in standalone mode. PV generation depends on solar irradiance, site location and environmental factors like temperature, wind and. Thus output of PV output is fluctuating in nature and the addition of non linear load make the situation more critical. GA based MPPT for PV generation works for local optimal solution. DC/DC and boost converter has been used to obtain rated desired rated voltage. BSU acts as secondary source to ensure uninterrupted power supply. A suitable three phase voltage source inverter (VSI), at point of common coupling (PCC), provides regulated power supply. Boost converters incorporating proportional controller (PI) increases PV voltage up to 400V. Conventionally used perturb and observe (PO) algorithm has been used for comparative study. Controlled pulse width modulated (PWM) switching pulse for converter unit and single section LC filter at output terminal eliminates harmonic components. To exhibit the system compatibility resistive, reactive, asynchronous induction motor and nonlinear load has been switched at different instants for variable solar irradiance and temperature.
机译:本文提出了基于遗传算法(GA)的光伏(PV)阵列的最大功率点跟踪(MPPT),其与电池存储单元(BSU)集成为独立发电模式。光伏发电取决于太阳辐照度,站点位置和环境因素,例如温度,风向和温度。因此,PV输出的输出本质上是波动的,并且非线性负载的增加使情况变得更加严重。基于GA的用于光伏发电的MPPT可用于局部最优解决方案。 DC / DC和升压转换器已用于获得所需的额定额定电压。 BSU充当辅助电源,以确保不间断电源。在公共耦合点(PCC)处,合适的三相电压源逆变器(VSI)可提供稳压电源。带有比例控制器(PI)的升压转换器将PV电压提高到400V。常规使用的扰动和观测(PO)算法已用于比较研究。转换器单元和输出端子处的单节LC滤波器的受控脉冲宽度调制(PWM)开关脉冲消除了谐波分量。为了展现系统兼容性,已针对不同的太阳辐照度和温度在不同的时刻切换了电阻,电抗,异步感应电动机和非线性负载。

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