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Optimization of Distributed Integrated Multi-energy System Considering Industrial Process Based on Energy Hub

机译:基于能量枢纽的工业过程的分布式集成多能量系统优化

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摘要

As a typical scenario of distributed integrated multi-energy system (DIMS), industrial park contains complex production constraints and strong associations between industrial productions and energy demands. The industrial production process (IPP) consists of controllable subtasks and strict timing constraints. Taking IPP as a control variable of optimal scheduling, it is an available approach that models the IPP as material flow into an extension energy hub (EH) to achieve the optimization of industrial park. In this paper, considering the coupling between the production process and energy demands, a model of IPP is proposed by dividing the process into different adjustable steps, including continuous subtask, discrete subtask, and storage subtask. Then, a transport model of material flow is used to describe the IPP in an industrial park DIMS. Based on the concept of EH, a universal extension EH model is proposed considering the coupling among electricity, heat, cooling, and material. Furthermore, an optimal scheduling method for industrial park DIMS is proposed to improve the energy efficiency and operation economy. Finally, a case study of a typical battery factory is shown to illustrate the proposed method. The simulation results demonstrate that such a method reduces the operation cost and accurately reflects the operation state of the industrial factory.
机译:作为分布式集成多能量系统(DIMS)的典型情景,工业园区包含复杂的生产限制和工业生产与能源需求之间的强大关联。工业生产过程(IPP)包括可控的子任务和严格的时序约束。将IPP作为最佳调度的控制变量,它是一种可用的方法,可以将IPP作为材料流入扩展能量枢纽(EH)以实现工业园的优化。在本文中,考虑到生产过程和能源需求之间的耦合,通过将过程划分为不同的可调步骤,包括连续子任务,离散子任务和存储子任务来提出IPP模型。然后,材料流的传输模型用于描述工业园区昏暗的IPP。基于EH的概念,建议考虑电力,热,冷却和材料的耦合来提出通用延伸EH模型。此外,提出了一种用于工业园区DIMS的最佳调度方法,以提高能源效率和运营经济。最后,示出了对典型电池厂的案例研究说明了所提出的方法。仿真结果表明这种方法降低了操作成本,准确地反映了工业厂的操作状态。

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