Multi-Time Scale Low-Carbon Optimization of IES Considering Demand Response of Multi-Energy

Fan Caixiong, Zhao Wenqiang, X. Jiawei, Wang Zhengwei, Zhou Jun, Shi Shengchao
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Abstract

This paper proposes a multi-time scale low-carbon operation optimization strategy considering electricity gas heat hydrogen demand response and stepped carbon emission cost mechanism to realize the low-carbon economic operation of integrated energy system (IES). By optimizing the adjustability of the thermal power ratio of the coupling equipment, considering the stepped carbon emission cost mechanism, and weighing the hydrogen load demand beyond electricity, gas and heat, a multi-time scale optimization model with three stages of day ahead, intraday, rolling and real-time is established in this paper. In order to realize the rapid solution of the optimization problem, this paper takes the overall operation cost of IES, the cost of carbon emissions, and the cost of wind and light rejection as the economic goal, transforms the original nonlinear problem into a mixed integer linear problem, and calls the Gurobi solver to solve it. Finally, the effectiveness of the proposed strategy in promoting low-carbon operation, giving full play to the flexibility of system equipment and promoting clean energy consumption is verified by comparing and analyzing the optimization results of various situations through simulation.
考虑多种能源需求响应的IES多时间尺度低碳优化
为实现综合能源系统的低碳经济运行,提出了考虑电、气、热、氢需求响应和阶梯式碳排放成本机制的多时间尺度低碳运行优化策略。通过优化耦合设备热电比的可调性,考虑阶梯式碳排放成本机制,并权衡电、气、热以外的氢负荷需求,建立了超前、日内、滚动、实时三个阶段的多时间尺度优化模型。为了实现优化问题的快速求解,本文以IES的总体运行成本、碳排放成本、弃风弃光成本为经济目标,将原来的非线性问题转化为混合整数线性问题,调用Gurobi求解器求解。最后,通过仿真对比分析各种情况下的优化结果,验证所提策略在促进低碳运行、发挥系统设备灵活性、促进清洁能源消费等方面的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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