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Modeling and optimal operation of community integrated energy systems: A case study from China

机译:社区综合能源系统的建模与优化运行:来自中国的案例研究

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The operation of community integrated energy systems (CIESs) is challenging because it is necessary to couple energy production, conversion and consumption on the end-user side. Multiple energy demands need to be fed simultaneously with the goal of economy and reliability. This paper formulates the optimal scheduling problem based on a real community integrated energy system in China. The system has multiple chillers (i.e. three ground source heat pumps, two conventional water-cooled chillers and two double-duty chillers) and two types of thermal storage devices (i.e. two cold water tanks and an ice-storage tank). Based on detailed device modeling, a community integrated energy system operation strategy considering unit commitment is proposed, and then is transformed into a mixed-integer linear programming model by linearization of nonlinear items. Case studies are conducted based on the data for a typical day in summer. The results show that the proposed strategy can utilize the flexibility of the energy storage devices and realize an economic and reliable operation of the community integrated energy system by coordinating various energy devices. The strategy can also reduce the startup/shutdown frequency of chillers significantly.
机译:社区集成能源系统(CIESs)的运营具有挑战性,因为有必要在最终用户侧将能源生产,转化和消耗耦合起来。为了经济和可靠性,需要同时满足多种能源需求。本文基于中国实际的社区综合能源系统,提出了最优调度问题。该系统具有多个冷却器(即三个地源热泵,两个常规水冷式冷却器和两个双用途冷却器)和两种类型的蓄热装置(即两个冷水箱和一个储冰箱)。在详细的设备建模基础上,提出了一种考虑机组承诺的社区综合能源系统运行策略,然后通过非线性项的线性化将其转化为混合整数线性规划模型。根据夏季典型一天的数据进行案例研究。结果表明,所提出的策略可以利用储能装置的灵活性,通过协调各种储能装置,实现社区综合能源系统的经济可靠运行。该策略还可以显着降低冷却器的启动/关闭频率。

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