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Novel methodology for microgrids in isolated communities: Electricity cost-coverage trade-off with 3-stage technology mix, dispatch & configuration optimizations

机译:偏远社区中微电网的新方法:通过三阶段技术组合,调度和配置优化实现电力成本回收

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摘要

Around the world, 1.1 billion people are severely affected by their lack of access to electricity. Other vulnerable communities receive low quality access, or face expensive prices that force them to restrict their consumption because of suboptimal technology choices made by their suppliers, which are sometimes forced by local regulation. Microgrids, properly sized and managed, may represent the best option to overcome these dilemmas, offering a tailor made supply. Today's standard methodologies to design isolated microgrids optimize the cost of supply as well as the cost of the energy not served with an exogenous per unit value for the lost load. They do not include community's restrictions, such as willingness to-pay, consumption level, budget constraints or its particular (endogenous) value of lost load. We developed a novel methodology that offers a range of microgrid designs to an isolated community, where each of them is optimal for a particular consumption pattern and value of lost load, from which the community may choose the one that best suits their needs. For this purpose, a Pareto optimal cost-coverage trade-off was constructed for an isolated community in northern Chile. A three-stage optimization was done: capacity (Genetic Algorithm), operation (robust optimization and mixed integer linear programming) and configuration (DC or AC). Diesel, gas, PV, wind and storages were modeled and 176 designs were found in total. More expensive microgrids (and with a larger electricity coverage) have hybrid mixes (conventional and renewable) and have an almost linear total cost from 298 to 249 USD/MW h for ENS from 0% to 28%. Lower quality microgrids are fully renewable, providing a very cheap but unreliable supply. The direct impact of lower-cost/limited supply microgrids offered here is the improvement of the quality of life of millions of vulnerable people, but it requires adjustments in the country's public policies of electrification programs. (C) 2017 Elsevier, ltd. All rights reserved.
机译:在全球范围内,有11亿人因无法获得电力而受到严重影响。其他弱势社区获得的质量较低,或者面临昂贵的价格,这是由于供应商做出的次优技术选择(有时受当地法规的约束),迫使他们限制了消费。适当大小和管理的微电网可能是克服这些难题的最佳选择,提供量身定制的供应。如今,设计隔离微电网的标准方法可以优化供应成本以及能源消耗的成本,而这些成本无法通过外部单位成本来承担。它们不包括社区的限制,例如付款的意愿,消费水平,预算约束或其损失的特定(内在)价值。我们开发了一种新颖的方法,可以为一个孤立的社区提供一系列微电网设计,其中的每个微电网设计对于特定的消费模式和损失负荷的价值都是最佳的,社区可以从中选择最适合其需求的微电网。为此,为智利北部的一个偏远社区构建了帕累托最优成本回收方案。完成了三个阶段的优化:容量(遗传算法),操作(鲁棒优化和混合整数线性规划)和配置(DC或AC)。对柴油,天然气,光伏,风能和储能进行了建模,总共发现了176种设计。较昂贵的微电网(且具有较大的电力覆盖范围)具有混合混合(常规和可再生),ENS的线性总成本从298美元到249美元/兆瓦时,几乎从0%到28%不等。较低质量的微电网可以完全再生,从而提供了非常便宜但不可靠的供应。这里提供的低成本/有限供应微电网的直接影响是改善了数百万弱势群体的生活质量,但这需要对该国的电气化计划公共政策进行调整。 (C)2017爱思唯尔有限公司版权所有。

著录项

  • 来源
    《Applied Energy》 |2017年第1期|204-221|共18页
  • 作者

    Bustos Cristian; Watts David;

  • 作者单位

    Pontificia Univ Catolica Rio de Janeiro, Dept Elect Engn, Vicuna Mackenna 4860, Santiago 7820436, Chile;

    Pontificia Univ Catolica Rio de Janeiro, Dept Elect Engn, Vicuna Mackenna 4860, Santiago 7820436, Chile|Fraunhofer Chile Res, Ctr Solar Energy Technol CSET, Vicuna Mackenna 4860, Santiago 7820436, Chile|Univ Wisconsin, 305 Taylor Hall,427 Lorch St, Madison, WI 53706 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Isolated community; Access to electricity; Pareto trade-off; Electricity coverage; Electrification programs; Microgrid economics;

    机译:偏僻的社区;电力供应;帕累托权衡;电力覆盖;电气化计划;微电网经济学;

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