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Design and Simulation of Power Electronic Controller for Grid Connected PV Array with maximum power point tracking (MPPT)

机译:具有最大功率点跟踪(MPPT)的并网光伏阵列功率电子控制器的设计和仿真

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Now-a-days renewable energy is the major concern due to the speed tendency in the progress of nations across the world and increased interests in environmental issues, In this research work on Design and Simulation of Power Electronic Controller for the model of Grid Connected PV Array for the purpose of maximum power point tracking (MPPT) using the DC boost convertor with line commutated invertor coupled with controller of maximum power point tracking (MPPT) for power interfacing of Grid Connected PV Array have been developed and simulated. Subject upon the irradiation the output of PV Array changes. In order to supply constant DC Supply to inverter circuit, the automatically adjustment of the duty cycle of PI controller is necessary. The single -phase utility Grid is fed by Maximum power from the solar array through MPPT Controller. By using open loop mode and close loop mode at different firing angles active power has been fed to the grid. Both the responses have been compared and found that they are agreed with each other. The proposed scheme has been modeled in the MATLAB 7.1/Simulink software by using open loop mode and close loop mode at different firing angles active power has been fed to the grid. Both the responses have been compared and found that they are agreed with each other.
机译:由于当今世界各国发展的速度趋势以及对环境问题的日益关注,如今可再生能源已成为人们关注的主要问题。在本研究中,针对并网光伏模型的电力电子控制器的设计与仿真研究为了开发最大功率点跟踪(MPPT)的阵列,已开发并模拟了直流升压转换器和线路换向逆变器,以及最大功率点跟踪控制器(MPPT)的并网光伏阵列的功率接口。受辐照后,PV Array的输出发生变化。为了向逆变器电路提供恒定的直流电源,必须自动调节PI控制器的占空比。单相公用电网通过MPPT控制器由太阳能电池板提供最大功率。通过在不同的点火角度使用开环模式和闭环模式,有功功率已馈入电网。比较了两个答复,发现它们彼此同意。所提出的方案已在MATLAB 7.1 / Simulink软件中通过使用开环模式和闭环模式在不同的点火角度进行建模,有功功率已馈入电网。比较了两个答复,发现它们彼此同意。

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