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Optimization Methods of MPPT Parameters for PV Systems: Review, Classification, and Comparison

机译:PV系统MPPT参数的优化方法:审查,分类和比较

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摘要

To obtain efficient photovoltaic (PV) systems, optimum maximum power point tracking (MPPT) algorithms are inevitable. The efficiency of MPPT algorithms depends on two MPPT parameters, i. e., perturbation amplitude and perturbation period. The optimization of MPPT algorithms affect both the tracking speed and steady-state oscillation. In this paper, optimization methods of MPPT parameters are reviewed and classified into fixed and variable methods. The fixed MPPT parameters are constant during MPPT performance, and a trade-off should be made between the tracking speed and steady-state oscillation. However, the variable MPPT parameters will be changed to improve both the tracking speed and the steady-state oscillations. Moreover, some of them are simulated, compared, and discussed to evaluate the real contributions of the optimization methods to the MPPT efficiency. Furthermore, significant features of the optimization methods, i.e., noise immunity, robustness, and computation effort, are investigated.
机译:为了获得高效的光伏(PV)系统,最佳的最大功率点跟踪(MPPT)算法是不可避免的。 MPPT算法的效率取决于两个MPPT参数,i。 e,扰动幅度和扰动期。 MPPT算法的优化影响跟踪速度和稳态振荡。在本文中,审查并分类为固定和可变方法的MPPT参数的优化方法。在MPPT性能期间,固定的MPPT参数是恒定的,并且应在跟踪速度和稳态振荡之间进行折衷。但是,将改变可变MPPT参数以改善跟踪速度和稳态振荡。此外,其中一些是被模拟,比较和讨论的,以评估优化方法对MPPT效率的实际贡献。此外,研究了优化方法的显着特征,即抗噪性,鲁棒性和计算努力。

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