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Design and Development of Maximum Power Point Tracker for Solar Module Using Microcontroller

机译:单片机最大功率点跟踪器的设计与开发

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The main objective of this paper is to design and develop a Maximum Power Point Tracker (MPPT) for solar modules using microcontroller. Maintaining a solar panel or an array of panels without an MPPT will often result in power loss, which in return requires installing more panels for the same power requirement. This will also result in premature battery failure or capacity loss. This is why the controllers of all solar power system should employ some method for maximum power point tracking (MPPT). Over the past decades many MPPT techniques have been published. In this paper, it is shown that a hardware based system has been designed using microcontroller. First based on the Perturb & Observe (P&O) MPPT algorithm, a complete code has been written and burnt into microcontroller IC. Then the whole system has been designed using buck boost converter and Hall sensor. The microcontroller takes the voltage and current output from the PV module and determines the maximum power point of the PV module. If we want to use the output power of the module to charge a battery, the MPPT will operate the PV module in its maximum power point despite the varying voltage level of the battery as well as the variation of solar radiation. The performance of the developed system has been studied and found working satisfactorily.
机译:本文的主要目的是设计和开发使用微控制器的太阳能模块的最大功率点跟踪器(MPPT)。维护没有MPPT的太阳能电池板或电池板阵列通常会导致功率损耗,这反过来又需要为相同的功率需求安装更多的电池板。这也将导致电池过早失效或容量损失。这就是为什么所有太阳能发电系统的控制器都应采用某种方法进行最大功率点跟踪(MPPT)的原因。在过去的几十年中,已经发布了许多MPPT技术。在本文中,表明使用微控制器设计了基于硬件的系统。首先,基于扰动和观察(P&O)MPPT算法,已编写了完整的代码并将其刻录到微控制器IC中。然后,使用降压升压转换器和霍尔传感器设计了整个系统。微控制器获取PV模块的电压和电流输出,并确定PV模块的最大功率点。如果我们想使用模块的输出功率为电池充电,则尽管电池电压水平变化以及太阳辐射变化,MPPT仍将以最大功率点运行PV模块。已研究开发系统的性能,并令人满意地工作。

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