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基于滞环比较的自寻优扰动观察MPPT控制策略

基于滞环比较的自寻优扰动观察MPPT控制策略

Self-optimizing perturbation and observation MPPT control strategy based on hysteresis comparison

Self-optimizing perturbation and observation MPPT control strategy based on hysteresis comparison

doi:
10.3969/j.issn.1671-5292.2018.02.011
摘要:
文章对于光伏发电系统最大功率点跟踪过程中定步长扰动观察法跟踪速度与跟踪精度之间的矛盾,分析了光伏电池的输出特性,并提出了一种基于滞环比较的自寻优扰动观察法.该算法首先以自寻优的方式来确定扰动步长,然后通过滞环比较环节来判断扰动的添加方向,这样能够保证控制系统的跟踪速度与跟踪精度满足要求,并有效地避免了最大功率点处的振荡问题和系统的误判问题.文章利用Simulink软件搭建了光伏发电系统模型.仿真结果表明,基于滞环比较的自寻优扰动观察法能够快速、准确地跟踪到最大功率点,从而提高了光伏发电系统的能量利用率.
Abstract:
Aiming at solving the contradiction of the tracking speed and tracking precision in fixed step-size perturbation and observation maximum power point tracking process of the photovoltaic power generation system, this paper proposes a self-optimizing perturbation and observation method based on hysteresis comparison by analyzing the output characteristics of photovoltaic cells. The proposed algorithm firstly uses the self-optimizing method to determine the perturbation step-size, and then determines the perturbation direction with hysteresis comparison. Through this control strategy can ensure that the tracking speed and the tracking accuracy of the control system can meet the requirements, while the oscillation at the maximum power point and the misjudgment of system can be avoided effectively. It utilizes Simulink software to build a model of the photovoltaic power generation system, and the results show that the self-optimizing perturbation and observation method based on hysteresis comparison can track the maximum power point rapidly and accurately which improves the energy efficiency of the photovoltaic power generation system.
作者 陈霞 高琳
Author: Chen Xia Gao Lin
作者单位 山东科技大学 电气与自动化工程学院,山东 青岛,266590
期 刊: 可再生能源 ISTIC EI SCI PKU CSSCI
Journal: Renewable Energy Resources
年,卷(期) 2018, 36(2)
分类号 TK519 TM615
关键词: 光伏发电 知识脉络 滞环比较 知识脉络 自寻优 知识脉络 最大功率点跟踪 知识脉络 Simulink仿真 知识脉络
Keywords: photovoltaic power generation hysteresis comparison self-optimizing maximum power point tracking Simulink simulation
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