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Bi-level optimization design strategy for compressed air energy storage of a combined cooling, heating, and power system

机译:用于组合冷却,加热和电力系统的压缩空气储能的双级优化设计策略

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摘要

Multi-energy flow coupling, along with system design and operation mismatching, is an essential issue that restricts the development of a combined cooling, heating, and power (CCHP) system. To achieve a compre-hensive cascade utilization of energy, a new CCHP system based on an internal combustion engine and compressed air energy storage (CAES) is proposed in this study. This system takes advantage of its multi-interface CAES, which not only enhances the correlation between thermoelectric systems but also improves the flexibility of multi-energy joint scheduling of CCHP systems. Considering the coupling relation between the equipment capacity and the operation mode, a bi-level optimization method is proposed for this system. The upper level optimizes the active equipment capacity of the system to reduce economic costs and increase the energy-saving. The lower level regards the daily energy consumption cost and primary energy saving ratio as the target to optimize the system operation mode and the equipment output planning. By applying the bi-level optimization method with direct joint optimization, the overall optimization and matching of the system capacity configuration and the working mode are realized. In addition, the priority relationship between the upper and lower levels of the optimization objectives is considered. Finally, a case study is provided to verify the effectiveness of the bi-level optimization method.
机译:多能量流量耦合以及系统设计和操作不匹配,是一个重要的问题,限制了组合冷却,加热和功率(CCHP)系统的开发。为实现包括基于内燃机和压缩空气能量存储(CAES)的新CCHP系统,在本研究中提出了一种基于内燃机和压缩空气储能(CAES)的新CCHP系统。该系统利用其多接口CAES,其不仅增强了热电系统之间的相关性,而且还提高了CCHP系统的多能量联合调度的灵活性。考虑到设备容量与操作模式之间的耦合关系,提出了一种为该系统提供了双级优化方法。上层优化了系统的主动设备容量,以降低经济成本并增加节能。较低的级别将每日能耗成本和主要节能比视为优化系统操作模式和设备输出规划的目标。通过使用直接联合优化的双级优化方法,实现了系统容量配置的整体优化和匹配和工作模式。此外,考虑优化目标的上层和下层之间的优先关系。最后,提供了案例研究以验证双层优化方法的有效性。

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