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Integrated utility pricing and design of water-energy rural off-grid systems

机译:集成的公用事业价格与水能农村脱网系统设计

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This work addresses a multi-objective strategy for defining the relationships between design and utility policy prices in water-energy off-grid systems. Levelized cost of utility is introduced for valuating the price of power, heat and water supply in an isolated community from Mexico. Besides, levels of subsidies and impacts of social, energy and economic policies are considered for defining the utility price for the end user. Levelized cost of electricity has been used as a common metric for determining the economic impact of implementing energy systems in off-grid systems. Normally, it is defined as a fixed cost associated to energy utilities. However, it is possible to define levelized cost of utilities associated to the design of multi-product systems. The proposed methodology allows determining the levelized cost of utilities using a flat-tariff scheme, as it is used in most of literature, and according to the demand generation dynamics. For testing these ideas, it is presented the design of a water-energy off-grid system consisting of combined heat and power units fed by natural gas and biogas. The water-energy surplus management is performed using pumping and battery systems. The optimal design considers the size and selection of units according with objective functions as minimizing total annual cost and land usage as well as maximizing the social opportunity of community. The utility cost influence over operational policy is defined by partial load and storage levels of the units. For reaching a trade-off between objective functions, it is used a utopia-tracking approach. Results show the suitable level of subsidies as well as the advantages of implementing dynamic levelized cost of utilities according with the behavior of the water-energy supply system. (C) 2019 Elsevier Ltd. All rights reserved.
机译:这项工作解决了定义水能离网系统中设计与公用事业政策价格之间的多目标战略。介绍了从墨西哥孤立的社区中的功率,热量和供水价格评估权力,热量和供水价格的稳定性。此外,考虑为最终用户的公用事业价格定义社会,能源和经济政策的补贴水平和影响。电力调整成本已被用作确定实施能源系统在非网格系统中的经济影响的常见指标。通常,它被定义为与能量实用程序相关的固定成本。然而,可以定义与多产品系统设计相关的公用事业公司的级别成本。所提出的方法允许使用平面关税方案确定公用事业公司的级别成本,因为它在大多数文献中使用,并且根据需求生成动态。为了测试这些思路,介绍了由天然气和沼气馈送的组合热量和动力装置组成的水能离网系统的设计。使用泵和电池系统进行水能盈余管理。最佳设计考虑根据客观功能的尺寸和选择,以最小化总年度成本和土地使用,并最大限度地提高社区的社会机会。对操作策略的实用费用影响由单位的部分负载和存储级别定义。为了在客观职能之间达到权衡,它是使用乌托邦跟踪方法。结果表明,适当的补贴水平以及根据水 - 能源系统的行为实现了公用事业的动态级别成本的优点。 (c)2019 Elsevier Ltd.保留所有权利。

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