Optimal Utilization Strategy of Integrated Energy for Commercial Users Based on CCHP Coupling

Encheng Dong, W. Cong, Jian Chen, Ming Chen, Tianyou Yang, Zhen Wei
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Abstract

Aiming at the optimal utilization problem of integrated energy for commercial users, the stepped utilization of energy was firstly analyzed in typical combined cooling, heating and power(CCHP) systems. Secondly, considering the coupling structure of the system and energy utilization characteristics of commercial users, a physical framework of integrated energy system(IES) was set up for multi-energy optimal utilization. Devices of energy production, conversion and storage was modelled on the source side, and meanwhile, on end-user side, load models were built according to space cooling, space heating, hot water and electric. Then, taking into account the time-of-use and costs of operation and maintenance, a mathematical model of IES optimal utilization was established, which was solved by YALMIP/Gurobi. Finally, Case study proves the economy and effectiveness of the proposed optimization strategy.
基于热电联产耦合的商业用户综合能源优化利用策略
针对商业用户综合能源优化利用问题,首先分析了典型冷热电联产系统的分步能源利用问题。其次,考虑系统的耦合结构和商业用户的能源利用特点,构建了综合能源系统(IES)的物理框架,以实现多能优化利用;在源端对能源生产、转换和存储设备进行了建模,同时在终端用户端根据空间制冷、空间供暖、热水和电力建立了负荷模型。然后,考虑使用时间和运维成本,建立了IES最优利用的数学模型,并利用YALMIP/Gurobi进行求解。最后,通过实例验证了所提优化策略的经济性和有效性。
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