论文标题
考虑核加热和碳交易的低碳综合能源系统的最佳调度
Optimal dispatch of low-carbon integrated energy system considering nuclear heating and carbon trading
论文作者
论文摘要
微型核电(NP)单位的发展以及碳贸易市场的改善为实现综合能源系统(IES)的低碳运行提供了一种新的方法。在这项研究中,将NP单元和碳交易机制引入IES,以构建新的低碳调度模型。考虑到由NP单元引入的系统操作柔韧性降低,一方面,NP单元的加热翻新工程是为了使其成为高温单元,以扩大其操作范围并提高其操作灵活性;另一方面,将辅助设备(例如电力储存系统,热存储系统和通电单元)引入IES中,以共同提高系统操作的灵活性。在模型解决阶段,使用离散的步骤转换,考虑了可再生能源(RE)输出不确定性(RE)输出不确定性(RE)输出的不确定性(CCP)模型。基于中国南部IE的真实数据构建的测试系统表明,该方法具有良好的经济和低碳环境保护效益。
The development of miniaturized nuclear power (NP) units and the improvement of the carbon trading market provide a new way to realize the low-carbon operation of integrated energy systems (IES). In this study, NP units and carbon trading mechanisms are introduced into the IES to build a new low-carbon scheduling model. In view of the decrease in system operation flexibility caused by the introduction of NP unit, on the one hand, the heating renovation of the NP unit is carried out to make it a cogeneration unit, to expand its operating range and improve its operating flexibility; on the other hand, auxiliary equipment such as electricity storage system, heat storage system and power to gas unit, which can carry out energy time translation or energy form conversion, are introduced into IES to jointly improve the flexibility of system operation. In the model-solving stage, the chance-constrained programming (CCP) model considering the uncertainty of the renewable energy (RE) output is converted into an equivalent mixed-integer linear programming (MILP) model using discretized step transformation. The test system built based on real data of an IES in North China shows that the proposed method has good economic and low-carbon environmental protection benefits.