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A novel MPPT algorithm for photovoltie systems under dynamic partial shading — Recurrent scan and track method

机译:动态局部阴影下光伏系统的新型MPPT算法—循环扫描和跟踪方法

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With the rapid development in the field of solar energy, photovoltaic (PV) modules are being used in a wide range of moving applications like cars, trains, ships and a number of space applications that are subjected to dynamic partial shading. In such applications the power-voltage (P-V) characteristics of the PV module continuously changes with time. The conventional Maximum Power Point Tracking (MPPT) techniques may not have a good conversion efficiency under these scenarios. This paper proposes a novel MPPT algorithm, namely Recurrent Scan and Track (RST) method that was designed in a manner so as to keep up with the changes in the output characteristics due to dynamic shading and track the Global Maximum Power Point (GMPP) at all times. Simulations and outdoor experimental tests taking into account three different dynamic partial shading conditions were carried out to prove the effectiveness of the proposed RST method.
机译:随着太阳能领域的飞速发展,光伏(PV)模块正被广泛用于运动应用中,例如汽车,火车,轮船以及许多经受动态局部遮蔽的空间应用中。在此类应用中,PV模块的电源电压(P-V)特性会随时间连续变化。在这些情况下,常规的最大功率点跟踪(MPPT)技术可能没有很好的转换效率。本文提出了一种新颖的MPPT算法,即递归扫描和跟踪(RST)方法,该算法的设计方式旨在适应动态阴影导致的输出特性变化,并跟踪全局最大功率点(GMPP)。一直。结合三种不同的动态局部阴影条件进行了仿真和户外实验,以证明所提出的RST方法的有效性。

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