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Maximum power point performance tracking comparison between incremental conductance with perturb and observe algorithms in photovoltaic power systems

机译:光伏发电系统中的最大电导率性能跟踪与扰动增量电导和观测算法之间的比较

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摘要

Electric power from solar energy technologies is gaining great and important uses because of cleanness, free, no noise and little maintenance. Their characteristic output power depends on fluctuating climatic conditions like temperature, cloud cover, and irradiance. Since climate is not always uniform, maximum power point tracking techniques are used in solar power systems to extract maximum power from photovoltaic systems. In this paper, voltage and current data from a 50 W stand-alone photovoltaic module located in Rwamagana district, Rwanda were recorded and used to compare the performance between incremental conductance algorithm with perturb and observe algorithm for maximum power point tracking. The maximum power point of 12.044 W was achieved at 15 hours for the incremental conductance algorithm. Both I-V and P-V characteristics of PV system show n-shaped nonlinear conductance and n-shaped nonlinear current characteristic curves. An equation was developed for the dissipative saw-tooth wave irradiance characteristic curve, at fairly constant temperatures, in the study.
机译:由于清洁,免费,无噪音且维护少,太阳能技术产生的电力正在获得重要的用途。它们的特征输出功率取决于气候条件的波动,例如温度,云量和辐照度。由于气候并不总是均匀的,因此在太阳能系统中使用最大功率点跟踪技术来从光伏系统中提取最大功率。本文记录了位于卢旺达Rwamagana区的一个50 W独立光伏模块的电压和电流数据,并用于比较增量电导算法与扰动之间的性能以及观察算法以跟踪最大功率点。对于增量电导算法,在15小时内可达到12.044 W的最大功率点。光伏系统的I-V和P-V特性均显示n型非线性电导和n型非线性电流特性曲线。在研究中,在相当恒定的温度下,为耗散的锯齿波辐照度特性曲线开发了一个方程。

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