Distributed generation for distribution network voltage enhancement and energy loss reduction

A. O. I. Adam, M. Shaaban, K. M. Nor, A. Gaouda
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引用次数: 1

Abstract

In this paper, the impact of cogeneration systems, representing distributed generations (DGs) scattered around in the distributed network, on enhancing the voltage profile and system losses is investigated. Different network loading levels are identified and categorized into peak, medium and light loading. A sensitivity-based method is used to reduce the search space and detect promising substation locations that can have a noticeable effect on system voltage and efficiency. Al Ain distribution system (AADS) is considered as the test system in this paper. Various locations that have a cogeneration potential were selected and various activities were allocated. Results show that, cogeneration, placed as DGs in the AADS at 13 locations, out of 178 nodes in the system, can bring tremendous benefits to system voltage profile and energy losses. Furthermore, economic viability is warranted under existing system operating conditions.
分布式发电用于配电网提高电压和降低能量损耗
本文研究了以分布式发电为代表的热电联产系统在分布式电网中的分布对电压分布和系统损耗的影响。确定了不同的网络负载水平,并将其分为峰值、中等和轻负载。采用基于灵敏度的方法来减少搜索空间,并检测出对系统电压和效率有显著影响的有前途的变电站位置。本文以配电系统(AADS)为测试系统。选择了具有热电联产潜力的不同地点并分配了各种活动。结果表明,在系统178个节点中,将热电联产作为DGs放置在13个位置的AADS中,可以为系统的电压分布和能量损失带来巨大的效益。此外,在现有系统运行条件下,经济可行性是有保证的。
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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