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Optimal design and operation of multi-energy system with load aggregator considering nodal energy prices

机译:考虑节点能源价格的带负荷聚合器的多能源系统的优化设计和运行

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摘要

This paper proposes a two-stage planning and design method for the multi-energy system (MES), which consists of multiple combined cooling, heating and power (CCHP) systems connected by the district electrical network and district heating/cooling network. In the first stage, the optimal objective is to minimize the annual capital and operating costs of the CCHP systems, as well as to obtain the optimal type and capacity of the equipment using the system parameters and load data. Then, a novel nodal energy pricing strategy is first proposed and calculated using the flow-tracing method. The nodal energy price comprises two parts: (i) nodal producing price and (ii) nodal transmission price. In the second stage, depending on the electrical, heating and cooling prices, a load aggregator (LA) is applied to manage the electrical, heating and cooling loads of the end users using an integrated demand response (IDR) program. The objective of the LA is to minimize the annual consumption expense of the end users and update the loads for the optimization in the first stage. In addition, the IDR program includes electricity-load shifting and flexible electrical, heating/cooling supply. Three cases are presented to demonstrate the effectiveness of the planning and design method and to show the influence of the nodal energy prices on the IDR program as well as the penetration of solar energy based on a reconstructive MES in northern China.
机译:本文提出了多能源系统(MES)的两阶段规划和设计方法,该方法由区域电气网络和区域供热/制冷网络连接的多个组合的制冷,供热和电力(CCHP)系统组成。在第一阶段,最佳目标是使CCHP系统的年度资本和运营成本降至最低,并使用系统参数和负载数据获得设备的最佳类型和容量。然后,首先提出了一种新颖的节点能量定价策略,并使用流量跟踪方法进行了计算。节点能源价格包括两个部分:(i)节点生产价格和(ii)节点传输价格。在第二阶段,根据电力,供热和制冷价格,使用集成了需求响应(IDR)程序的负载聚合器(LA)来管理最终用户的电力,供热和制冷负载。 LA的目标是最大程度地减少最终用户的年度消费支出,并在第一阶段更新负载以进行优化。此外,IDR计划还包括电力负荷转移和灵活的电气,加热/冷却供应。提出了三个案例,以证明规划和设计方法的有效性,并展示节点能源价格对IDR计划的影响以及基于中国北部重建MES的太阳能渗透。

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