Flexible distribution design in microgrids for dynamic power demand in low-income communities

J. Ehnberg, H. Ahlborg, E. Hartvigsson
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引用次数: 4

Abstract

Microgrids for electricity provision have an important role to play in achieving current international targets of electrifying poor rural communities around the world. In the East-African context, microgrid developers face challenges related to dispersed settlement patterns and high poverty levels that prevent many rural citizens from affording grid connection. Contextual factors influence demand for electricity, leading to uncertainties regarding development of consumption in newly electrified areas. Developers usually oversize the system in anticipation of growing demand, which leads to significant investment costs and economic risk in case projected growth fails to appear. Our focus in this paper is to introduce a concept of flexible distribution design - a process that can reduce initial investment cost and still be able to meet the long-term variations of the load, thereby reducing economic risks involved in microgrid development and thereby an entry barrier. We exemplify the usefulness of this design approach by seven steps of transfer capacity increase, which can be taken in sequence or in part, to achieve a distribution system configuration flexible enough to handle changes in electricity consumption, both increasing and in some cases also decreasing. Considerations on how flexible design would impact on system operation, power transfer capacity and demands on local technical expertise and maintenance are included. Importantly, the technical discussion is related to socio-economic aspects and the consequences for end-users as well as the utility. Real-world examples of application of the mature technologies from East-Africa address the feasibility and provide a context for the discussion.
面向低收入社区动态电力需求的微电网柔性配电设计
提供电力的微电网在实现目前世界各地贫穷农村社区通电的国际目标方面可发挥重要作用。在东非,微电网开发商面临着与分散的居住模式和高贫困水平相关的挑战,这些挑战使许多农村居民无法负担电网接入费用。环境因素影响电力需求,导致新电气化地区消费发展的不确定性。开发商通常会在预期需求增长的情况下扩大系统规模,这将导致重大的投资成本和经济风险,以防预期的增长未能出现。本文的重点是介绍一个灵活配电设计的概念——一个可以降低初始投资成本的过程,仍然能够满足负荷的长期变化,从而降低微电网发展的经济风险,从而降低进入壁垒。我们通过增加输电容量的七个步骤来举例说明这种设计方法的实用性,这些步骤可以依次或部分地进行,以实现足够灵活的配电系统配置,以应对电力消耗的变化,无论是增加还是在某些情况下也减少。考虑到灵活的设计对系统运行、电力传输能力的影响,以及对本地技术专长和维修的需求。重要的是,技术讨论涉及社会经济方面及其对最终用户和效用的影响。东非成熟技术的实际应用实例解决了可行性问题,并为讨论提供了背景。
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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