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Research on Double-Layer Optimized Configuration of Multi-Energy Storage in Regional Integrated Energy System with Connected Distributed Wind Power

机译:连接分布式风电利用型综合能源系统多能量储存双层优化配置研究

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摘要

With the wide application of multi-energy storage technology in the regional integrated energy system, the configuration of multi-energy storage devices is expected to enhance the economic benefits of regional integrated energy systems. To start with, in this paper, the basic framework of the regional integrated energy system is constructed, and a mathematical model of micro-gas turbine, gas boiler, distributed wind power and multi-energy storage device is established. Then, the multi-energy storage and double-layer planning configuration model with multi-energy complementation is established. The upper level of the model aims to minimize the comprehensive investment cost of multi-energy storage, while the lower level of the model aims to minimize the comprehensive systematic operating cost, in which the net losses cost is also included and the required multi-energy storage capacity from the upper level is set as its constraint. During the programming and problem solving, the second-order conic relaxation technology is introduced to realize the convex relaxation for power flow constraint. At the same time, the piecewise linearization method is adopted to deal with the natural gas pipeline flow constraint, which can convert the original model into a mixed integer programming problem. In the end, the example analysis is carried out in the IEEE 33-bus system and the improved 6-node natural gas system. The results show that the multi-energy storage technology can improve the economics of the regionally integrated energy system to a certain extent, and have verified the validity of the model.
机译:随着区域综合能源系统的广泛应用,多能量存储技术,多能量存储设备的配置预期增强区域综合能源系统的经济效益。首先,在本文中,区域集成能量系统的基本框架构造,并且建立微型燃气轮机,燃气锅炉,分布式风力发电和多能量存储装置的数学模型。然后,与多能互补的多能量储存和双层规划配置模型。该模型的目标的上限水平,以尽量减少多能量储存的综合投资成本,而模型的目标的较低水平,以尽量减少全面系统的运行费用,其中净亏损,成本也包括在内,需要多能量从上层的存储容量被设置为它的约束。在编程和解决问题,二阶圆锥放松技术引进,实现电力流约束凸松弛。与此同时,分段线性化方法采取的应对与天然气管道流量约束,可在原模型转化成一个混合整数规划问题。在结束时,例如分析在IEEE 33节点系统和改进的6节点天然气系统中进行。结果表明,多能量存储技术,可以提高区域综合能源系统的经济在一定程度上,并验证了模型的有效性。

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