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Generalization of the main MPPT methods

机译:主要MPPT方法的概括

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摘要

The paper demonstrates that the two main non-model based variable step-size Maximum Power Point Tracking (MPPT) algorithms, namely Perturb and Observe and Incremental Conductance are functionally equivalent. This outcome is achieved by establishing general closed-loop controller-plant structure of corresponding methods, allowing to formulate the MPPT problem as a typical stabilization task. The MPPT loop plants are separated into three main components, two of which are similar and the third one is different. The latter component, referred to as “stabilization function estimator”, is shown to be the main reason for the performance differences of the discussed methods. Moreover, in case the estimator bandwidth is decoupled from the MPPT loop bandwidth, similar large signal performance may be expected utilizing any of the methods.
机译:本文演示了两种主要的基于非模型的可变步长最大功率点跟踪(MPPT)算法,即扰动和观测和增量电导在功能上是等效的。通过建立相应方法的通用闭环控制器-工厂结构,可以将MPPT问题公式化为典型的稳定任务来实现这一结果。 MPPT回路设备分为三个主要组件,其中两个相似,而第三个则不同。后者被称为“稳定函数估计器”,被认为是所讨论方法的性能差异的主要原因。此外,在估计器带宽与MPPT环路带宽解耦的情况下,可以使用任何一种方法来预期相似的大信号性能。

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