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Performance analysis of photovoltaic powered dc motor — Propeller system

机译:光伏动力直流电动机 - 螺旋桨系统的性能分析

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The application of autonomous directly photovoltaic (PV) powered electro-mechanical has received increasing attention for different applications (e.g. PV water pumping, PV powered cooling of arid climate greenhouses, solar vehicles etc). The PV array output is a nonlinear and time-dependent power supply that varies with solar intensity and cell temperature, so the performance characteristics of the directly PV-powered DC motor - propeller system are very different than when powered by a constant DC voltage. The focus of this work is to do performance analysis of directly PV-powered DC motor - propeller system. Through performance evaluation, it has been observed that power transfer matching, with respect to the maximum power points of the PV module and the operating points of the DC PM motor - propeller, mainly depend on the load parameters, DC motor parameters. The matching can be improved by selecting appropriate parameters of the DC motor and propeller load. In designing a DC motor (for directly PV powered system), it is very important to consider the PV array's locus of maximum operating points for a particular propeller load application. This analysis will be useful in developing a directly PV powered aerodynamic systems.
机译:自主直接光伏(PV)动力机电的应用得到了对不同应用的影响(例如,PV水泵,干旱气候温室,太阳能车辆等PV供电。 PV阵列输出是非线性和时间相关的电源,其随太阳能和电池温度而变化,因此直接PV供电的直流电动机 - 螺旋桨系统的性能特性与恒定直流电压供电时非常不同。这项工作的重点是为直接PV供电的直流电机 - 螺旋桨系统进行性能分析。通过性能评估,已经观察到电力传递匹配,关于PV模块的最大功率点和DC PM电机 - 螺旋桨的操作点,主要取决于负载参数,直流电动机参数。通过选择直流电动机和螺旋桨负载的适当参数,可以提高匹配。在设计直流电动机(直接PV供电系统)时,考虑特定螺旋桨负载应用的最大操作点的PV阵列的基因座非常重要。该分析对于开发直接PV供电的空气动力学系统将是有用的。

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