并网系统直流电流抑制与最大功率跟踪光伏逆变器技术的设计与实现

V. S., Kathirvel C, Sebastian Vindro Jude P, Mohan Kumar R
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引用次数: 0

摘要

在该模型中,光伏系统无变压器并网逆变器的设计采用直流电流消除的概念,以实现更高的效率、更低的重量和无偏置测量误差。在近年的无变压器光伏逆变器中,非电流隔离配置导致共模电压,从而导致电流通过光伏杂散电容泄漏到地。现有模型的另一个主要问题是逆变器输出阶段,由于功率开关电路的不对称和驱动脉冲的不对称,直流电流注入在交流电网线路内进行。为了提高系统的可靠性,提出了一种利用差分放大器和滤波器组成的抑制回路来消除直流电流的逆变器控制新技术。由于这种技术排除了直流分量,通过电网的电流中的均匀谐波大大减少。在对系统进行理论分析的基础上,利用MATLAB软件对所提出模型的整体设计进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Implementation of Photovoltaic Inverter Techniques in DC Current Suppression and Maximum Power Point Tracking for Grid Connected System
In this proposed model, the design of grid connected transformer-less inverter for Photo-Voltaic (PV) system is implemented with the concept of DC current elimination which aims at higher efficiency, lower weight and free from offset measurement errors. In recent years of transformer less Photo-Voltaic (PV) inverters, the non-galvanic isolation configuration leads to common mode voltage which results in leakage of current to the ground through the Photo-Voltaic stray capacitance. Another main concern of existing model comes in inverter output stage when injection of DC current is done inside the AC grid line because of the disparity of power switching circuits and asymmetry of driving pulses. This new control technique of inverters with DC current elimination using a suppression loop that consists of a difference amplifier and a filter is proposed to make the system highly reliable. Since this technique excludes the DC component, the even harmonics in the current passing through the grid is considerably reduced. The whole design of proposed model has been verified using MATLAB software according to the theoretical analysis of the system.
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