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Comparative study of maximum power point tracking control strategies for solar PV systems

机译:太阳能光伏系统最大功率点跟踪控制策略的比较研究

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Solar photovoltaic (PV) energy is becoming an increasingly important part of the world's renewable energy. In order to develop efficient technology for effective energy extraction from a solar PV system, this paper investigates and compares typical maximum power point tracking (MPPT) control strategies used in solar PV industry. This paper focuses especially on how sampling rate and time delay influence PV system performance by using different MPPT control approaches in a digital control environment, and how different MPPT techniques behave under highly dynamic and variable weather conditions. A computational experiment system is developed by using MatLab, SimPowerSystems and Opal-RT real-time simulation system for fast and accurate performance evaluations of PV arrays under high frequency switching conditions of power converters. Advantages, disadvantages, and characteristics of different MPPT techniques are studied, evaluated, and compared through extensive computational experiments.
机译:太阳能光伏(PV)能源正成为世界可再生能源中越来越重要的一部分。为了开发用于从太阳能光伏系统中有效提取能量的高效技术,本文研究并比较了太阳能光伏行业中使用的典型最大功率点跟踪(MPPT)控制策略。本文特别关注采样率和时延如何在数字控制环境中通过使用不同的MPPT控制方法来影响光伏系统的性能,以及不同的MPPT技术在高度动态和多变的天气条件下的行为。利用MatLab,SimPowerSystems和Opal-RT实时仿真系统开发了一个计算实验系统,用于在功率转换器的高频开关条件下快速准确地评估光伏阵列的性能。通过广泛的计算实验,研究,评估和比较了不同MPPT技术的优点,缺点和特性。

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