MPPT with incremental Conductance and Control Analysis

Himanshu Kumar, S. Srivastava
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引用次数: 1

Abstract

Operational efficiency, performance optimization and system reliability for a smart grid system are a key criterion. Here we discuss incremental conductance method for tracking Maximum Power in PV system module [1]. This method is proposed because it is accurate, robust and easy to model the PV array. The model based controller is designed such that reference signal for PWM generation of the converter can be adjusted to get maximum generation power by PV module. The Boost DC is used into AC by using three phase Inverter, then the AC power is transmit to the Smart Grid. The MPPT Controller is suitable for studying Power and voltage as well the current and voltage curve for PV system. The proposed System is design on MATLAB/SIMULINK software. The below described model as well its control strategy gives us an exemplary tool for performance optimization of smart grid.
电导增量式MPPT及控制分析
智能电网的运行效率、性能优化和系统可靠性是智能电网系统的关键指标。本文讨论了增量电导法跟踪光伏系统组件最大功率的方法[1]。该方法具有精度高、鲁棒性好、易于建模等优点。设计了基于模型的控制器,使变换器产生PWM的参考信号可以调节,使光伏模块获得最大的发电功率。升压后的直流电通过三相逆变器转换成交流电,再将交流电送入智能电网。MPPT控制器适用于研究光伏系统的功率和电压以及电流和电压曲线。本系统采用MATLAB/SIMULINK软件进行设计。下面描述的模型及其控制策略为我们提供了智能电网性能优化的示例工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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