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FPGA based implementation of MPPT algorithms for photovoltaic system under partial shading conditions

机译:基于FPGA的MPPT算法的局部遮阳条件下的光伏系统实现

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摘要

In Photovoltaic (PV) systems, Maximum power point (MPPT) tracking has emerged as a crucial element of that guarantees PV arrays maximum power output in all environmental conditions. Almost regularly there is a shadowing effect that occurs on the PV arrays. This is done either in a manner that is partial or almost complete coverage through trees, poles, towers, building nearby or even passing clouds. Almost often there is a shadowing impact that happens on the PV arrays. This is often done either in a manner that is partial or almost complete coverage through trees, poles, towers, building nearby or even passing clouds. Under these conditions, multiple peaks occurs that increase the complexity of the PV characteristics which in turn results in difficulty in tracking Global Peak (GP). Therefore the proposed Periodic Power Hunt (PPH) MMPT technique permits in overcoming those problems which include lower observation efficiency under Partial Shading Conditions (PSCs) like in perturbing and observe (P&O) MPPT. The proposed PPH scheme PV array under PSCs shows various completed peaks. The tracking performance is also compared with P&O-MPPT algorithms. The control technique doesn't have any effect of explicit operating environments and results in better performance than ancient strategies with solar power harvesting. The FPGA based experimental implementation of proposed PPH MPPT solution in such a technique that does not involve particular measurement of open circuit voltage or short circuit current. (C) 2020 Published by Elsevier B.V.
机译:在光伏(PV)系统中,最大功率点(MPPT)跟踪作为其关键因素,可确保所有环境条件中的PV阵列最大功率输出。几乎定期存在在PV阵列上发生的阴影效果。这是以偏袒或几乎完全覆盖通过树木,杆,塔,附近的甚至通过云的方式完成的。几乎通常存在在PV阵列上发生的阴影影响。这通常以部分或几乎完全覆盖通过树木,杆,塔,附近的建筑物,甚至通过云的方式进行。在这些条件下,发生多个峰,从而提高光伏特性的复杂性,这又导致跟踪全局峰(GP)。因此,所提出的定期功率狩猎(PPH)MMPT技术允许克服这些问题,包括在扰动和观察(P&O)MPPT中的局部阴影条件(PSC)下的较低观察效率。 PSC下所提出的PPH方案PV阵列显示各种完整的峰。还与P&O-MPPT算法进行了比较的跟踪性能。控制技术对明确的操作环境没有任何影响,并导致比具有太阳能收割的古代策略更好的性能。基于FPGA的基于PPH MPPT解决方案的基于FPGA的实验实施,其技术不涉及开路电压或短路电流的特定测量。 (c)2020由elsevier b.v发布。

著录项

  • 来源
    《Microprocessors and microsystems》 |2020年第9期|103011.1-103011.11|共11页
  • 作者单位

    Tamilnadu Generat & Distribut Corp Pollachi India;

    Dr Mahalingam Coll Engn & Technol Dept Elect & Commun Engn Pollachi India;

    Dr Mahalingam Coll Engn & Technol Dept Elect & Elect Engn Pollachi India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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