Novel Pumping System based on Micro-Hydro Turbine and Centrifugal Pump coupled using EVT Induction Machine. Application in Rural Area Irrigation

M. Cendoya, S. Verne, P. Battaiotto
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Abstract

In this article, a topology for energy conversion oriented to water pumping for irrigation in remote areas is proposed. A micro-hydraulic turbine working at fixed speed, in a "run-off-river" configuration, drives a centrifugal pump through a variable electric transmission (EVT). An EVT based on induction machines was selected, with the stator directly connected to a weak AC grid but the internal rotor fed by a variable frequency drive, allowing an adjustable pump speed. The grid supplies a base power for residential consumption, while the hydro turbine increases the available power for irrigation and thus augmenting productivity of the land uphill and beyond the vicinity of the watercourse. The grid also provides an assistance function, absorbing/delivering a reduced amount of power in case the hydraulic resource is excessive/insufficient for the requested water pumping. As the turbine delivery is constant, the water pumping requirement establishes the power exchanged between turbine, AC grid and pump. For this reason, an analysis to quantify the power flow in the system components for different pump speeds has been carried out. The system modeling is described and computer simulations, using a specific pump speed profile, are presented to validate the performed theoretical analysis.
基于EVT感应电机的微型水轮机与离心泵耦合泵送系统。在农村灌溉中的应用
本文提出了一种面向偏远地区灌溉抽水的能量转换拓扑结构。一个以固定速度工作的微型水力涡轮机,在“径流河”配置下,通过可变电力传动(EVT)驱动离心泵。选择了基于感应电机的EVT,定子直接连接到弱交流电网,但内部转子由变频驱动器供电,允许可调泵速。电网为居民提供基础电力,而水轮机增加了灌溉的可用电力,从而提高了上坡和水道附近以外土地的生产力。电网还提供辅助功能,在水力资源过剩/不足的情况下,吸收/输送减少的电力。由于水轮机的输送量是恒定的,抽水需求决定了水轮机、交流电网和水泵之间的功率交换。为此,对不同泵速下系统组件的功率流进行了量化分析。描述了系统建模和计算机仿真,使用特定的泵转速曲线,提出了验证所进行的理论分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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