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Coordinated operation of water and electricity distribution networks with variable renewable energy and distribution locational marginal pricing

机译:具有可变可再生能源和分布地区边际定价的水电分配网络的协调运行

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Water and electricity distribution networks are two highly interdependent and critical infrastructures in the world today. This paper investigates the coupling of water and electricity distribution networks through the electrical energy demand of water pumps. Further, with additional variable renewable energy (VRE) sources in the distribution system, utilities face significant challenges stemming from the VRE stochasticity. In this paper, a coordinated operational model of urban water and electricity distri-bution networks is proposed. Stochastic VRE generation is handled by using a data-driven probability efficient point (PEP) method based on historical wind and solar datasets without the need for any probability distribution function. Case studies are performed on a modified Institute of Electrical and Electronics Engineers (IEEE) 13-node electricity distribution network coupled with a 10-node water distribution network, typical of a small-town setting. Results show the impact of coordinating water and energy networks on the cost of operation and the distribution locational marginal prices (DLMPs). The inclusion of water tanks as alternative storage devices in the electricity distribution network are shown to slightly reduce voltage violations, line congestion, and VRE curtailments in a case with high VRE penetration. (c) 2021 Elsevier Ltd. All rights reserved.
机译:水和电力分配网络是当今世界上两层高度相互依存和关键的基础设施。本文通过水泵的电能需求研究了水和电力分配网络的耦合。此外,在分配系统中具有额外可变可再生能源(VRE)来源,公用事业公司面临着源于VRE的截止值的显着挑战。本文提出了一种建议城市水和电力分布网络的协调运营模式。通过使用基于历史风和太阳能数据集的数据驱动的概率有效点(PEP)方法来处理随机VRE生成,而无需任何概率分布功能。案例研究是对改进的电气和电子工程师协会(IEEE)13节点电力分配网络进行的案例研究,其与10节点水分配网络,典型的小城镇设置。结果表明协调水和能源网络对运行成本和分布基地边际价格(DLMPS)的影响。将水箱作为电力分配网络中的替代存储装置的含量略微降低电压违规,线拥塞和VRE延迟,在高速渗透的情况下。 (c)2021 elestvier有限公司保留所有权利。

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