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A novel variable step size adaptive conductance ratio algorithm for MPPT in solar PV systems

机译:太阳能光伏系统中MPPT的新型变步长自适应电导比算法

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摘要

Maximum power point tracking is a concept employed to adjust the operating point of a solar cell such that the maximum possible power is extracted from it regardless of variation in solar irradiation, ambient temperature and loading conditions. In this paper, a novel variable step size algorithm called the Adaptive Conductance Ratio algorithm has been proposed. The proposed algorithm dynamically adjusts the step size of converter duty cycle variation based on a proportional-integral control strategy, thus eliminating the traditional compromise between speed of convergence and steady-state efficiency. It solves the drawbacks found in certain other variable step size algorithms proposed hitherto. It also promises complete removal of steady-state oscillations, thus achieving true maximum power point and an observable improvement in tracking efficiency. The performance of the proposed algorithm has been analysed via simulation under various environmental conditions, in comparison with an existing variable step size algorithm. The concept and efficacy of the proposed algorithm and its supremacy over the existing algorithm have been established in principle.
机译:最大功率点跟踪是一种用于调整太阳能电池的工作点的概念,以便从中提取最大可能的功率,而与太阳辐射,环境温度和负载条件的变化无关。在本文中,提出了一种新的可变步长算法,称为自适应电导率算法。提出的算法基于比例积分控制策略动态调整转换器占空比变化的步长,从而消除了收敛速度和稳态效率之间的传统折衷。它解决了迄今为止提出的某些其他可变步长算法中发现的缺点。它还保证完全消除稳态振荡,从而实现真正的最大功率点并显着改善跟踪效率。与现有的可变步长算法相比,已通过仿真在各种环境条件下分析了所提出算法的性能。原则上已经建立了所提出算法的概念和有效性,以及相对于现有算法的优越性。

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