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Fast and Robust Maximum Power Point Tracking for Solar Photovoltaic Systems | Science Publications

机译:快速可靠的太阳能光伏系统最大功率点跟踪科学出版物

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> >Solar Photovoltaic (PV) energy is becoming an increasingly important part of the world's renewable energy. In order to develop technology for efficient energy conversion from a solar PV system, this paper studies typical Maximum Power Point Tracking (MPPT) control techniques used in solar PV industry and then proposes a close-loop and adaptive MPPT method for reliable and rapid extraction of solar PV power. The paper emphasizes especially on how the proposed and conventional adaptive MPPT methods perform under highly variable weather and solar irradiation conditions in a digital control environment. A computer simulation system is developed by using SimPowerSystems and Opal-RT real-time simulation technology which allows for fast and efficient investigations of the MPPT algorithms under high switching frequency conditions for power converters. A hardware experiment system is built to validate and compare the proposed and conventional MPPT techniques in a more practical condition. Advantages, disadvantages and properties of different MPPT methods are compared and studied, evaluated.
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进行高效能量转换的技术,本文研究了太阳能光伏行业使用的典型最大功率点跟踪(MPPT)控制技术,然后提出了一种闭环自适应MPPT方法来可靠,快速地提取太阳能。太阳能光伏发电。本文特别着重于在数字控制环境中,在高度变化的天气和太阳辐射条件下,建议的和传统的自适应MPPT方法的性能如何。通过使用SimPowerSystems和Opal-RT实时仿真技术开发了一种计算机仿真系统,该技术可以在功率转换器的高开关频率条件下快速有效地研究MPPT算法。建立了硬件实验系统,以在更实际的条件下验证和比较建议的MPPT技术和传统的MPPT技术。比较,研究,评估了不同MPPT方法的优缺点和性能。

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