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Dispatch model for integrated heat and power systems considering internal composition of CHP plants

机译:考虑CHP植物内部组成的集成热量和电力系统的调度模型

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摘要

An integrated heat and power system (IHPS) is a promising approach for alleviating wind curtailment problems. In an IHPS, the combined heat and power (CHP) plant is the key component, which supplies both heat and electric loads, and couples the thermal system and power system. However, existing research commonly ignores or simplifies the internal composition of CHP plants, which could lead to some unavoidable errors. This paper focuses on the internal composition of CHP plants, and models the physical processes in different components and flexible resources in the CHP plant. Furthermore, a joint dispatch problem of an IHPS with the above CHP plant models is formulated, and an iterative algorithm is developed to handle the nonlinearity in this problem. Case studies are performed based on a real CHP plant in Northern China, and the results indicate that the synergistic effect of different energy resources in the CHP plant is realized by the joint dispatch model, which promotes wind power accommodation and reduces fossil fuel consumption.
机译:集成的热量和电力系统(IHPS)是一种有望的方法,可缓解风削减问题。在IHPS中,组合的热量和功率(CHP)工厂是主要部件,其供应热量和电动载荷,并耦合热系统和电力系统。然而,现有的研究通常忽略或简化CHP植物的内部组成,这可能导致一些不可避免的错误。本文重点介绍了CHP植物的内部组成,并模拟了不同组件中的物理过程和CHP工厂的灵活资源。此外,配制了具有上述CHP工厂模型的IHP的联合调度问题,开发了一种迭代算法以处理这个问题的非线性。案例研究是基于中国北部的真正CHP工厂进行的,结果表明,CHP工厂中不同能源资源的协同效应是通过联合调度模型实现,促进风力传播,减少化石燃料消耗。

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