首页> 外文会议>2017 IEEE International Conference on Environment and Electrical Engineering and 2017 IEEE Industrial and Commercial Power Systems Europe >An improved analog maximum power point tracking circuit for solar cells suitable for abrupt variations in irradiation levels
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An improved analog maximum power point tracking circuit for solar cells suitable for abrupt variations in irradiation levels

机译:一种改进的用于太阳能电池的模拟最大功率点跟踪电路,适用于辐照水平的突然变化

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摘要

This document exposes the architecture and performance of an improved Maximum Power Point Tracking (MPPT) circuit, applied to a high power solar cell. The circuit uses event-based control, such that the solar cell power oscillates between maximum value and a limit falling factor of its maximum. The circuit is composed in general by analog components as comparators, switches, attenuators and incorporates an antidivergence system suitable for abrupt variations in irradiation levels. The proposed MPPT converges to the Maximum Power Point (MPP) even with abrupt changes in irradiation from one kilowatts to one-hundred watts per square meter. The results show a tracking efficiency greater that ninety-seven percent and a maximum average efficiency greater than ninety-eight percent.
机译:本文档介绍了应用于大功率太阳能电池的改进的最大功率点跟踪(MPPT)电路的体系结构和性能。该电路使用基于事件的控制,从而使太阳能电池功率在最大值和最大值的极限下降因子之间振荡。该电路通常由模拟组件(如比较器,开关,衰减器)组成,并包含一个适用于辐照水平突然变化的抗发散系统。即使辐射从每平方米1千瓦急剧变化到100瓦,拟议的MPPT也会收敛到最大功率点(MPP)。结果显示跟踪效率大于百分之九十七,最大平均效率大于百分之九十八。

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