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Development of a new microcontroller based MPPT method for photovoltaic generators using Akbaba model with implementation and simulation

机译:基于Akbaba模型的光伏控制器基于微控制器的MPPT新方法的开发与仿真

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A novel microcontroller based maximum power point tracker (MPPT) circuit for small scale, stand-alone photovoltaic generators, PVGs, has been built, simulated and tested. The I-V characteristic of PVG is characterized using five solar radiation dependent parameters, two of which are short circuit current and open circuit voltage of PVGs. A DC/DC converter is used as a matching circuit between the load and PVG. Selecting a suitable fixed frequency, the duty cycle (delta) of DC/DC converter has been determined adaptively by microcontroller, by getting feedback from the instantaneous value of the output voltage. As such the system is suitable for dynamic and static loads. Therefore the system needs two measurements, which are solar radiation intensity and feedback from the output voltage across the load, which are fed to microcontroller. The measured solar radiation intensity is converted by microcontroller into percent solar radiation, G, where the highest ever value of the solar radiation intensity in the location is fed to the microcontroller as the base value. The system parameters are PVC dependent and need to be obtained separately for every PVC. A prototype has been built and reasonable correlation is obtained between the measured and simulated results. (C) 2016 Elsevier Ltd. All rights reserved.
机译:针对小型独立光伏发电机PVG的新型微控制器最大功率点跟踪器(MPPT)电路已被构建,仿真和测试。 PVG的I-V特性使用五个与太阳辐射有关的参数来表征,其中两个参数是PVG的短路电流和开路电压。 DC / DC转换器用作负载和PVG之间的匹配电路。选择合适的固定频率后,微控制器通过从输出电压的瞬时值获取反馈来自适应地确定DC / DC转换器的占空比(delta)。因此,该系统适用于动态和静态负载。因此,系统需要两个测量值,分别是太阳辐射强度和负载两端的输出电压反馈,这些测量值被馈送到微控制器。微控制器将测得的太阳辐射强度转换为太阳辐射百分比G,其中该位置有史以来最高的太阳辐射强度值作为基值输入微控制器。系统参数取决于PVC,需要为每个PVC分别获取。已经建立了原型,并且在测量结果和模拟结果之间获得了合理的相关性。 (C)2016 Elsevier Ltd.保留所有权利。

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