Fast dynamic response of SEPIC converter based photovoltaic DC motor drive for water pumping system

Vijayakumar Gali, P. Amrutha
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引用次数: 11

Abstract

In this paper, a SEPIC converter designed for Photovoltaic water pumping system. This type of model avoids use of extra converter and use of battery which reduces the cost of whole system. The Solar water pumping system has becoming more popular in recent years. Photovoltaic (PV) cell having non linear P-V characteristics, it varies with changing solar radiation. Maximum power point tracking (MPPT) algorithms are used to track the peak power point, which helps to improve the efficiency of the system. The MPPT algorithms are incorporated with DC-DC converter which helps to track the MPP of PV cell. The Advantage of SEPIC converter is reduce the ripple at the output stage and also gives the same polarity as input polarity, which feeds the DC motor, so that the motor runs smoothly without any jerking moments, therefore life the DC motor will be increased. The proposed system is tested with different insolation conditions by changing the solar radiation and observed the DC motor characteristics. The P&O algorithm is used to track the MPP point according to changes in solar insolation and tested using MATLAB SIMULINK model and observed all the results.
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基于SEPIC变换器的光伏直流电机驱动抽水系统的快速动态响应
本文设计了一种用于光伏水泵系统的SEPIC变换器。这种模式避免了额外的转换器和电池的使用,降低了整个系统的成本。近年来,太阳能水泵系统越来越受欢迎。光伏电池具有非线性P-V特性,随太阳辐射的变化而变化。采用最大功率点跟踪(MPPT)算法对峰值功率点进行跟踪,提高了系统的工作效率。将MPPT算法与DC-DC变换器相结合,实现了对光伏电池MPP的跟踪。SEPIC变换器的优点是减少输出阶段的纹波,并提供与输入极性相同的极性,为直流电机供电,使电机平稳运行,没有任何抖动力矩,因此直流电机的寿命将增加。通过改变太阳辐射,对系统进行了不同日照条件下的测试,并观察了直流电机的特性。采用P&O算法根据太阳日照的变化跟踪MPP点,并使用MATLAB SIMULINK模型进行测试,观察所有结果。
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