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A Mixed-Integer Linear Programming Model for the Optimal Operation and Design of Residential Neighbourhoods

机译:一种混合整数线性规划模型,用于住宅邻域的最优运行与设计

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This paper presents the results of a Mixed-Integer Liner Programming (MILP) model for the optimal design and operation of a distributed energy resource (DER) system in the UK residential sector. The model optimizes the design and utilization of a network with integrated heating/cooling pipelines and micro-grid connections between neighborhoods, in two case studies of five and ten houses, respectively. This work explores the use of feed-in tariffs, renewable heat incentives and the ability to buy and sell from and to the national grid. Depending on the scenario it is shown that DER networks mitigate around 30-40% of the CO_2 emissions per household, compared with ‘traditional generation’, in which all the electricity comes from the national grid, the heating and domestic hot water are provided by gas boilers and air-conditioning units provide space cooling. Moreover, money from feed-in tariffs, renewable heat incentives and sales to the grid, as well as reduced grid purchases, make the DER networks more economical, and more profitable (approximately £100 per year per household), compared with the traditional energy system.
机译:本文介绍了英国住宅扇区中分布式能源(DER)系统的最佳设计和操作的混合整数衬垫编程(MILP)模型的结果。该模型优化了网络的设计和利用,分别在附近的集成加热/冷却管道和微电网连接,分别为五个和十个房屋的两个案例研究。这项工作探讨了使用饲料关税,可再生热激励措施和从国家电网购买和销售的能力。根据方案,显示Der Networks每户约30-40%的CO_2排放量,与“传统一代”相比,所有电力来自国家电网,加热和国内热水提供燃气锅炉和空调装置提供空间冷却。此外,与传统能源相比,从饲料关税中,可再生的热量激励和销售额以及销量减少,使DER网络更经济,更有利可图(每家家每户约100英镑)系统。

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