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Performance analysis of a PV powered DC motor driving a 3-phase self-excited induction generator

机译:驱动三相自励感应发电机的光伏直流电动机的性能分析

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摘要

Photovoltaic (PV) powered DC motors driving dedicated loads (e.g. water pumps) are increasingly used in the remote rural areas of many developing countries. The key to their success is simplicity (direct coupling, no DC-AC inversion, no storage batteries, etc.). In this paper, a PV powered DC motor is used to drive an isolated three-phase self-excited induction generator (SEIG). It is found that due to the unique torque-speed characteristics of the SEIG, utilization efficiency is close to maximum at all insolation levels with no peak-power tracking. The proposed arrangement is useful as part of an integrated renewable energy system (IRES), which takes advantage of the inherent diversity of wind and insolation in most developing countries to improve power quality. The SEIG is driven by wind turbine, DC motor, or both. Performance of the system under different insolation conditions is analyzed.
机译:在许多发展中国家的偏远农村地区,越来越多地使用由光伏(PV)供电的直流电动机来驱动专用负载(例如水泵)。它们成功的关键是简单性(直接耦合,无DC-AC反相,无蓄电池等)。在本文中,PV供电的直流电动机用于驱动隔离的三相自激感应发电机(SEIG)。发现由于SEIG独特的转矩速度特性,在没有峰值功率跟踪的情况下,在所有日照水平下的利用率都接近最大值。拟议的安排可作为综合可再生能源系统(IRES)的一部分,该系统利用大多数发展中国家固有的风能和日照差异来改善电能质量。 SEIG由风力涡轮机,直流电动机或两者共同驱动。分析了在不同日照条件下系统的性能。

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