利用感应电机提高并网太阳能光伏水泵系统的性能

C. Manideep, M. V. Priya
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引用次数: 1

摘要

该研究的目的是实现一个简单和降低成本的光伏系统的配置,该系统由最大功率和高效率的感应电机级转换器组成。该系统由两级控制器组成,一是最大功率点控制器和模糊逻辑控制器,其中模糊逻辑控制器在异步电动机中创建了新颖的模糊隶属度。从太阳能光伏系统的两组辐照度中共采集了20个样品。对这些样品进行了增量电导、占空比、太阳能光伏功率和感应电机功率性能的分析,并对电机功率进行了最大功率点跟踪。性能结果提高了效率,并通过各自的控制策略在辐照度值和步长上强制感应电机达到最大功率点。感应电机使用的G功率为80.00%,两个独立均值的统计检验差保持在0.05。在本研究中,我们发现改进异步电机的成本配置和效率与各自的辐照度值有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improvement Of Performance In Grid Connected Solar Photovoltaic For Water Pumping System Using Induction Motor
The aim of the study is to achieve a simple and decreasing cost configuration on photovoltaic systems composed of stages converters of maximum power and high efficiency on Induction motors. This system consists of two stages of controllers, one is maximum power point controller and fuzzy logic controller in which novel fuzzy membership is created in an induction motor. A total of 20 samples were collected from the two sets of irradiance in the solar photovoltaic system. These samples are analysed with incremental conductance, duty ratio, solar PV power and induction motor power performance motor power with a maximum power point tracking. The performance result improves the efficiency and forces a maximum power point on the induction motor at irradiance values and step size with respective control strategies. The G power used in an induction motor is 80.00% and the statistical test-difference between two independent means is kept at 0.05. In this study, it’s found that cost configuration and efficiency of improving induction motors with respective irradiance values.
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