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Fast and precise global maximum power point tracking techniques for photovoltaic system

机译:光伏系统快速精确的全球最大功率点跟踪技术

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The multiple power peaks obtained in the power-voltage (P-V) curve of a photovoltaic string under partially shaded condition results in a complicated maximum power point tracking (MPPT) process. Under this condition, the conventional MPPT methods are not acknowledged as they result in false and slow tracking. In this study three novel global MPPT (GMPPT) methods have been proposed and validated. These are named as large and small duty step (LSDS), large and mutable duty step (LMDS) and fast and intelligent GMPPT (FI-GMPPT). The LSDS method sweeps almost the entire P-V curve using a combination of LSDS. Small duty steps are used in predefined areas near all local maximum power points of the P-V curve. LMDS is a further improved method, which uses a combination of LMDSs. The FI-GMPPT is an advance true GMPPT method which limits the area to be swept during the search process. This results in a further reduction in sweep time. In this method, the unnecessary area is skipped during the sweep process. The improved performance of the projected methods has been demonstrated and validated using MATLAB/SIMULINK and hardware implementation.
机译:在部分阴影条件下在光伏串的功率-电压(P-V)曲线中获得的多个功率峰值会导致复杂的最大功率点跟踪(MPPT)过程。在这种情况下,传统的MPPT方法不会得到认可,因为它们会导致错误和缓慢的跟踪。在这项研究中,已提出并验证了三种新颖的全局MPPT(GMPPT)方法。它们分别称为大占空比和小占空比(LSDS),大占空比和可变占空比(LMDS)以及快速智能的GMPPT(FI-GMPPT)。 LSDS方法结合使用LSDS可以扫描几乎整个P-V曲线。小负载步进用于P-V曲线的所有局部最大功率点附近的预定义区域。 LMDS是进一步改进的方法,它结合了LMDS。 FI-GMPPT是一种先进的真正GMPPT方法,它限制了搜索过程中要扫描的区域。这导致扫描时间进一步减少。在这种方法中,在扫描过程中会跳过不必要的区域。已使用MATLAB / SIMULINK和硬件实现论证并验证了所提出方法的改进性能。

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