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Analysis of Dynamic Characteristic for Solar Arrays in Series and Global Maximum Power Point Tracking Based on Optimal Initial Value Incremental Conductance Strategy under Partially Shaded Conditions

机译:部分阴影条件下基于最优初始值增量电导策略的串联太阳能电池阵列动态特性分析和全局最大功率点跟踪

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Partial shading (PS) is an unavoidable condition which significantly reduces the efficiency and stability of a photovoltaic (PV) system. With PS, the system usually exhibits multiple-peak output power characteristics, but single-peak is also possible under special PS conditions. In fact it is shown that the partial shading condition (PSC) is the necessary but not sufficient condition for multiple-peak. Based on circuit analysis, this paper shows that the number of peak points can be determined by short-circuit currents and maximum-power point currents of all the arrays in series. Then the principle is established based on which the number of the peak points is to be determined. Furthermore, based on the dynamic characteristic of solar array, this paper establishes the rule for determination of the relative position of the global maximum power point (GMPP). In order to track the GMPP within an appropriate period, a reliable technique and the corresponding computer algorithm are developed for GMPP tracking (GMPPT) control. It exploits a definable nonlinear relation has been found between variable environmental parameters and the output current of solar arrays at every maximum power point, obtained based on the dynamic performance corresponding to PSC. Finally, the proposed method is validated with MATLAB ? /Simulink ? simulations and actual experiments. It is shown that the GMPPT of a PV generation system is indeed realized efficiently in a realistic environment with partial shading conditions.
机译:部分遮挡(PS)是不可避免的情况,会大大降低光伏(PV)系统的效率和稳定性。使用PS时,系统通常表现出多峰值输出功率特性,但是在特殊PS条件下也可以达到单峰值。实际上,已经表明,局部阴影条件(PSC)是多峰的必要条件,但不是充分条件。基于电路分析,本文表明可以通过串联的所有阵列的短路电流和最大功率点电流确定峰值点数。然后建立原理,基于该原理确定峰值点的数量。此外,根据太阳能电池板的动态特性,建立了确定全球最大功率点(GMPP)相对位置的规则。为了在适当的时期内跟踪GMPP,开发了一种可靠的技术和相应的计算机算法用于GMPP跟踪(GMPPT)控制。它利用已发现的可变的环境参数与每个最大功率点处太阳能电池阵列的输出电流之间的可定义非线性关系,该关系是基于PSC的动态性能而获得的。最后,本文提出的方法在MATLAB上得到了验证。 / Simulink?模拟和实际实验。结果表明,光伏发电系统的GMPPT实际上是在具有部分阴影条件的实际环境中有效实现的。

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