Isolated 3-phase self-excited induction generator in pico-hydro power plant using water pump load in remote mountainous region of Himalayas

Umesh C. Rathore, Sanjeev Singh
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引用次数: 7

Abstract

This paper presents the performance of isolated 3-phase self-excited induction generator (SEIG) in micro-hydro power plant using water pump as load. The daily electrical load profile in remote mountainous region of Himalayas shows vast difference in minimum and maximum load on the generator operated in isolated mode. Induction generators are most suitable types of generators for renewable energy conversion systems due to their advantages over conventional generators. The load on these generators has to be kept constant to maintain the voltage and frequency under permissible limits. Therefore under off-load conditions, the extra energy available can be utilized for other purposes such as operating water pump and other need based applications rather than wasting the energy in resistive dump load. In this paper, the potential benefits of using water pump as load under light/off-load conditions have been explored. The performance characteristics of isolated 3-φ SEIG are obtained using MATLAB-Simulink facility and the simulation model is based on the electrical loading pattern in mountainous terrain of Himalayas.
喜马拉雅偏远山区水泵负荷微型水力发电厂隔离三相自激感应发电机
本文介绍了以水泵为负荷的微型水电厂隔离三相自激感应发电机(SEIG)的性能。喜马拉雅偏远山区的日用电负荷分布表明,隔离模式下发电机的最小和最大负荷存在巨大差异。感应发电机是最适合于可再生能源转换系统的发电机类型,因为它比传统发电机有更多的优点。这些发电机上的负荷必须保持恒定,以使电压和频率保持在允许的范围内。因此,在卸载条件下,可用的额外能量可以用于其他目的,如操作水泵和其他基于需要的应用,而不是浪费在电阻转储负载上的能量。本文探讨了水泵在轻/卸载工况下作为负荷的潜在效益。利用MATLAB-Simulink软件对隔离型3-φ SEIG进行了性能分析,建立了基于喜马拉雅山区电载荷模式的仿真模型。
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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