并网光伏系统功率输出变步长P&O算法及无传感器DPC方法

E. Heydari, A. Y. Varjani
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引用次数: 3

摘要

单级拓扑是低成本光伏并网系统的常用拓扑之一。在这些系统中,逆变器是唯一同时应用最大功率点跟踪算法和电网侧控制器的变换器。因此,MPPT算法应与电网侧控制器相适应,以获得更好的瞬态响应,并消除内部控制回路。相对而言,最流行的MPPT算法和电网侧控制器之一是P&O和直接功率控制。为了将它们组合在一起,应该使用带功率输出的P&O。然而,控制器的响应速度,特别是在单级系统中是非常重要的。因此,由于功率的动态性小于电流或电压,采用带功率输出的快速P&O算法有利于超过变换器的暂态响应。为此,本文提出了一种带功率输出的变步长P&O算法。该控制器对功率扰动进行自动调节,有效地提高了系统的响应速度、功率振荡和稳态精度。此外,为了减少硬件成本和尺寸,还提出了一种网格侧控制器的无传感器方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A New Variable Step-Size P&O Algorithm with Power Output and Sensorless DPC Method for Grid-Connected PV System
One of the popular topologies specially for low cost grid-connected photovoltaic systems is single-stage topologies. In these systems, the inverter is the only converter where both maximum power point tracking algorithm and grid side controller will be applied to it. Hence, the MPPT algorithm should be adapted with grid side controller for better transient response and to remove the internal control loops. One of the most popular MPPT algorithms and grid side controllers are P&O and direct power control, relatively. To combine them, an P&O with power output should be used. However, the response speed of controllers especially in single-stage system is very important. Therefore, since the dynamic of power is less than current or voltage, a fast P&O algorithm with power output is beneficial to exceed the transient response of the converter. Hence, a changing step-size P&O algorithm with power output is proposed in this paper. This controller regulates the power perturbation automatically, where the response speed of the system, power oscillations and accuracy in steady state can effectively improve. In addition, to reduce the hardware cost and size, a sensorless method is also presented for grid side controller.
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