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首页> 外文期刊>International Journal of Electrical Power & Energy Systems >Study on maximum power point tracking of photovoltaic array in irregular shadow
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Study on maximum power point tracking of photovoltaic array in irregular shadow

机译:不规则阴影下光伏阵列的最大功率点跟踪研究

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摘要

Traditional maximum power point tracking (MPPT) methods can hardly find global maximum power point (MPP) because output characteristics curve of photovoltaic (PV) array may have multi local maximum power points in irregular shadow, and thus easily fall into the local maximum power point. To address this drawback, Considering that sliding mode variable structure (SMVS) control strategy have such advantages as simple structure, fast response and strong robustness, and P&O method have the advantages of simple principle and convenient implementation, so a new algorithm combining SMVS control method and P&O method is proposed, besides, PI controller is applied to reduce system chattering caused by switching sliding surface. It is applied to MPPT control of PV array in irregular shadow to solve the problem of multi-peak optimization in partial shadow. In order to verity the rationality of the proposed algorithm, the experimental circuit is built, which achieves MPPT control by means of the proposed algorithm and P&O method. The experimental results show that compared with the traditional P&O algorithm, the proposed algorithm can fast track the global MPP, tracking speed increases by 60% and the relative error decreased by 20%. Moreover, the system becomes more stable near the MPP, the fluctuations of output power is greatly reduced, and thus make full use of solar energy. (C) 2014 Elsevier Ltd. All rights reserved.
机译:传统的最大功率点跟踪(MPPT)方法几乎找不到全局最大功率点(MPP),因为光伏(PV)阵列的输出特性曲线可能在不规则阴影中具有多个局部最大功率点,因此很容易落入局部最大功率点。针对这一缺点,考虑到滑模变结构控制策略具有结构简单,响应速度快,鲁棒性强等优点,而P&O方法具有原理简单,实现方便的优点,因此结合SMVS控制方法的新算法提出了P&O方法,并采用PI控制器来减少因滑动面切换而引起的系统抖动。应用于不规则阴影下光伏阵列的MPPT控制,解决了局部阴影下的多峰优化问题。为了验证所提算法的合理性,建立了实验电路,通过所提算法和P&O方法实现了MPPT控制。实验结果表明,与传统的P&O算法相比,该算法可以快速跟踪全局MPP,跟踪速度提高了60%,相对误差降低了20%。而且,系统在MPP附近变得更加稳定,输出功率的波动大大减小,从而充分利用了太阳能。 (C)2014 Elsevier Ltd.保留所有权利。

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