Design and Simulation of Grid Connected MPPT based PV Module

Nidhi Singh
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Abstract

Radiation from the sun is an amount that is produced each hour by the Sun and is a critical information for the outline and decide the productivity of a photovoltaic plant and ambient temperature enormously influence the execution of the solar power. In this paper a new approach is projected for analysis on style and control of grid solar system the project is based on power control of tie line. This technique of low stress on utilization of customized control topology. The working principle of described method is that the grid is developed by the solar system for the distribution of energy and tie line control is developed with the help of two parameters viz. frequency and power. For obtaining this we are using here maximum power point tracking (mppt) and boost converter for increasing the efficiency of photovoltaic cell. In every PV system MPPT is a pivotal technique. From the results it is clear that the presented techniques of control using mppt can ward off tracking differences and gives an enhanced outcome in both steady and dynamic response.
基于并网MPPT的光伏模块设计与仿真
来自太阳的辐射量是太阳每小时产生的辐射量,是决定光伏电站轮廓和生产力的关键信息,环境温度对太阳能发电的执行有很大影响。本文提出了一种新的方法来分析并网太阳能系统的形式和控制,该方案是基于并网线路的功率控制。该技术对自定义控制拓扑的利用压力小。所述方法的工作原理是由太阳能系统建立电网进行能量分配,并借助频率和功率两个参数建立线路控制。为了实现这一点,我们在这里使用最大功率点跟踪(mppt)和升压转换器来提高光伏电池的效率。在每一个光伏系统中,MPPT都是一项关键技术。从结果中可以清楚地看出,使用mppt的控制技术可以避免跟踪差异,并在稳定和动态响应中提供增强的结果。
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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