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An effective power management strategy for a wind-diesel-hydrogen based remote area power supply system to meet fluctuating demands under generation uncertainty

机译:一种有效的风柴油基于偏远偏远电源系统的电力管理策略,以满足生成不确定性的波动需求

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摘要

This paper addresses technical issues in relation to a power management in a wind dominated hybrid remote area power supply (RAPS) system consisting of a doubly-fed induction generator (DFIG), a diesel generator, hydrogen based generation scheme and mains loads. In this regard, hydrogen based generation scheme consists of an electrolyser and a fuel cell system is integrated to RAPS system. Moreover, this paper presents the development of control strategies for effective power management of the RAPS system which eventually contribute to achieve the following objectives (a) voltage and frequency regulation on load side (b) maximum power extraction from wind and (c) avoidance of the operation of diesel generator at low load conditions. Through simulation studies it is demonstrated that the proposed power management strategy for sharing load demand is capable of regulating the load side voltage and frequency within satisfactory limits while extracting maximum power from wind.
机译:本文涉及由有关辅助感应发电机(DFIG),柴油发电机,基于氢生成方案和电源负荷组成的风力统治混合偏远电源(RAPS)系统中的技术问题。在这方面,基于氢的产生方案由电解槽组成,燃料电池系统集成到RAPS系统。此外,本文提出了对RAP系统的有效电力管理的控制策略的发展,该系统最终有助于实现以下目标(a)电压和频率调节对负载侧(b)的最大功率提取,(c)避免柴油发电机在低负载条件下的操作。通过仿真研究,证明了用于共享负载需求的所提出的电源管理策略能够在从风中提取最大功率的同时调节令人满意的限制内的负载侧电压和频率。

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