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Performance and Efficiency Simulation Study of a Smart-Grid Connected Photovoltaic System

机译:智能电网互联光伏系统的性能和效率仿真研究

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摘要

The availability of non-renewable energy sources such as crude oil, natural gas, coal etc., is fast diminishing. So the renewable energy sources such as solar, hydropower, geothermal, wind, tidal energy, are gaining more and more importance. Many new developments to convert these renewable energy sources into usable forms are taking place. Most renewable energy sources are used to produce electricity. In this paper, a performance and efficiency simulation study of a smart-grid connected photovoltaic system using Chroma DC programmable power supply, AC programmable source and an Aurora Inverter is proposed. The simulation is performed in MATLAB environment where the Current-Voltage (I-V) and Power-Voltage (P-V) curves from the solar array simulator are generated and plotted. The proposed topology has been verified with satisfactory results. In addition, temperature and irradiance effects on I-V and P-V characteristic curves are verified. Also, the efficiency curves of the photovoltaic grid interface inverter are generated in the study. The MATLAB code developed in this paper is a valuable tool for design engineers comparing different inverters, calculating the optimum efficiency of a given inverter type.
机译:诸如原油,天然气,煤炭等不可再生能源的可用性正在迅速减少。因此,诸如太阳能,水力发电,地热能,风能,潮汐能等可再生能源越来越重要。将这些可再生能源转化为可用形式的许多新发展正在发生。大多数可再生能源用于发电。本文提出了使用色度直流可编程电源,交流可编程电源和Aurora逆变器的智能电网连接光伏系统的性能和效率仿真研究。该仿真是在MATLAB环境中执行的,其中将生成并绘制来自太阳能电池阵列模拟器的电流-电压(I-V)和功率-电压(P-V)曲线。所提出的拓扑已通过验证,结果令人满意。此外,还验证了温度和辐照度对I-V和P-V特性曲线的影响。此外,研究中还生成了光伏并网接口逆变器的效率曲线。本文开发的MATLAB代码是设计工程师比较不同逆变器,计算给定逆变器类型的最佳效率的宝贵工具。

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