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Design methodology to optimise induction machines based stand-alone electrical wind water pumping systems

机译:优化基于异步电机的独立式电动风水抽水系统的设计方法

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A novel methodology for designing a wind-electric water pumping system is developed in this study. The system employs a self-excited induction generator (SEIG) driven by a wind turbine (WT) and an induction motor (IM) feeding a water pump. Selection of values and proper configuration of excitation capacitors for this system is the key factor which is performed by an optimisation algorithm. The methodology commences with the design of hydraulic system and choice of proper pump. Then, the gearbox ratio of the chosen WT is determined to coordinate the characteristic of the WT with that of the pump. The aim is operation of the system near the maximum power output of the WT in different wind speeds. Thereafter, the electrical system is designed by choosing the suitably rated powers for the SEIG and IM. The optimal capacitor values in various configurations, viz. the shunt, short shunt, long shunt, T, and pi, are calculated utilising the genetic algorithm and then, the best configuration considering the system operating conditions is introduced. The objective function is defined to regulate the IM operating point at the knee point of its magnetising characteristic under wind speed variations. The system performance is evaluated through simulation and experiment.
机译:在这项研究中开发了一种设计风电水泵系统的新颖方法。该系统采用由风力涡轮机(WT)驱动的自激感应发电机(SEIG)和为水泵供电的感应电动机(IM)。该系统的激励电容器的值的选择和适当配置是由优化算法执行的关键因素。该方法从液压系统的设计和选择合适的泵开始。然后,确定所选择的WT的齿轮比,以使WT的特性与泵的特性协调。目的是使系统在不同风速下接近WT的最大功率输出。此后,通过为SEIG和IM选择合适的额定功率来设计电气系统。各种配置下的最佳电容器值,即。利用遗传算法计算出分流器,短分流器,长分流器,T和pi,然后介绍考虑系统工作条件的最佳配置。目标函数定义为在风速变化时将IM工作点调节到其磁化特性的拐点处。通过仿真和实验评估系统性能。

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