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Autonomous water pumping system based on wind generation. Control by rotor frequency

机译:基于风力发电的自主抽水系统。转子频率控制

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There exists in Argentina a growing interest in alternative energy sources such as wind and solar energy for water pumping in remote areas. In this context, the main objective of the paper is to present and evaluate a configuration for an autonomous wind energy conversion system oriented to water pumping. It consists of a wind turbine with a wound rotor generator, electrically coupled with a squirrel cage induction machine moving a centrifugal-type water pump. The power flow control is performed through the rotor winding of the generator by changing the frequency and voltage of its excitation. The system is controlled by means of a torque control which follows the optimal turbine torque in order to maximize the volume of water pumped based on the optimization of the wind energy capture. The energy injection from a secondary energy source to DC-link is also foreseen, in such a way that the pump could absorb both power sources. An analysis of the system operation points and the power flow for different wind speed and solar radiation is accomplished, supported by simulation results.
机译:在阿根廷,人们越来越关注替代能源,例如用于偏远地区抽水的风能和太阳能。在这种情况下,本文的主要目的是提出和评估面向抽水的自主风能转换系统的配置。它由一个带有绕线转子发电机的风力涡轮机组成,该风力涡轮机与一个使离心式水泵运动的鼠笼式感应电机电气耦合。通过改变发电机励磁的频率和电压,通过发电机的转子绕组进行功率流控制。该系统通过扭矩控制进行控制,该扭矩控制遵循最佳涡轮扭矩,以便基于风能捕获的优化来最大化抽水量。还可以预见从二次能源到直流母线的能量注入,这样泵就可以吸收两个电源。在仿真结果的支持下,完成了针对不同风速和太阳辐射的系统工作点和功率流的分析。

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