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Performance and control system design for FPGA based CVMPPT boost converter for remote SPV water pumping system applications

机译:基于FPGA的CVMPPT升压转换器的性能和控制系统设计,用于远程SPV抽水系统应用

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Solar energy is a renewable and a vast source of primary energy to electricity. PV module is increasingly employed in utilizing the sun's energy for generating electrical energy. The photovoltaic pumping has become one of the most promising fields in photovoltaic applications especially in remote locations. As the output characteristic of a photovoltaic module is nonlinear and changes with solar irradiation and cell's temperature so attention is paid to their design and their optimal use. Therefore a Maximum Power Point Tracking (MPPT) technique is needed to maximize the produced energy. In this paper, the proposed work is to extract maximum power from the PV array to powered water pumping system. Boost converter with Constant voltage MPPT (CVMPPT) technique is employed to drive centrifugal pump through permanent magnet DC motor. The 1KWp solar PV array is designed and modeled in MATLAB Simulink environment. CVMPPT is implemented in Xilinx system generator which is interfaced with MATLAB Simulink to control the DC-DC boost converter model in order to extract power to drive PMDC motor. The detailed study is carried out and the results are presented.
机译:太阳能是可再生能源,是一次能源的巨大来源。越来越多地将PV模块用于利用太阳能产生电能。光伏泵浦已成为光伏应用中最有前途的领域之一,尤其是在偏远地区。由于光伏模块的输出特性是非线性的,并且会随着太阳辐射和电池温度的变化而变化,因此请注意其设计和最佳使用。因此,需要最大功率点跟踪(MPPT)技术来最大化产生的能量。在本文中,拟议的工作是从光伏阵列中提取最大功率到动力抽水系统。采用恒压MPPT(CVMPPT)技术的升压转换器通过永磁直流电动机驱动离心泵。 1KWp太阳能光伏阵列是在MATLAB Simulink环境中设计和建模的。 CVMPPT在Xilinx系统生成器中实现,该系统生成器与MATLAB Simulink接口以控制DC-DC升压转换器模型,以提取功率来驱动PMDC电机。进行了详细的研究并给出了结果。

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