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Variable step size Perturb and observe MPPT for PV solar applications

机译:可变步长微扰并遵守MPPT用于光伏太阳能的应用

摘要

In order to deliver maximum output of photovoltaic (PV) cells, the usage of maximum power point tracking (MPPT) is essential. The speed and stability of the tracking technique are highly desired. Perturb and Observe (P&O) is one of the most common tracking techniques, but it suffers from the slow tracking speed at small duty cycle step and fluctuates when subjected with large duty step, which results in higher losses under dynamic weather to which the photovoltaic (PV) cells exposed. In this paper, variable step size Perturb and Observe is introduced throughout Matlab/Simulink simulation to overcome this problem to achieve higher efficiency, reliable tracking accuracy and higher speed under fast changing weather. In comparison with other variable P&O techniques, the proposed method features a dynamic step size for more tracking efficiency and accuracy. Double diode modelling is used in this technique for better photovoltaic (PV) cell's characteristic prediction. In this study, the adapted technique had been tested to wide range of sun irradiance and operation temperatures.
机译:为了提供最大的光伏(PV)电池输出,必须使用最大功率点跟踪(MPPT)。高度期望跟踪技术的速度和稳定性。 Perturb and Observe(P&O)是最常见的跟踪技术之一,但是它在小占空比步长下跟踪速度较慢,在大占空比步长下会波动,这会导致在动态天气下光伏的损耗更高( PV)电池暴露。在本文中,在整个Matlab / Simulink仿真中引入了可变步长的Perturb和Observe,以克服此问题,从而在快速变化的天气下实现更高的效率,可靠的跟踪精度和更高的速度。与其他可变P&O技术相比,该方法具有动态步长大小,可提高跟踪效率和准确性。该技术使用双二极管建模来更好地预测光伏(PV)电池的特性。在这项研究中,已对适应性技术进行了广泛的太阳辐照度和操作温度测试。

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