Multi-objective Optimal Dispatching of the Integrated Energy System in the Industrial Park

Yuqin Xu, Keyi Xu
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引用次数: 1

Abstract

The integrated energy system (IES) has great application prospect in future energy system. Due to the high coupling of energy flow in the system, the dispatch operation needs to consider the unified dispatch of multiple energy sources. At present, the operation scheduling research of the integrated energy system mostly focuses on the single-objective optimization problem with the best economic cost, and the environmental protection and efficiency of the system are less considered. A multi-objective optimization scheduling model is proposed in this paper, taking the lowest operating cost, the lowest pollutant emissions, and the highest comprehensive energy utilization rate as objective functions. The Normal Boundary Intersection (NBI) method is adopted to solve this model and the partial small fuzzy set decision is used to get the best solution. Finally, the proposed model is verified on an IES of an industrial park in central China. The case study demonstrates that the proposed optimization scheduling model can generally make the system operation more environmentally friendly and efficient.
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工业园区综合能源系统的多目标优化调度
综合能源系统在未来的能源系统中具有广阔的应用前景。由于系统中能量流的高度耦合,调度操作需要考虑多能源的统一调度。目前,综合能源系统的运行调度研究多集中在经济成本最佳的单目标优化问题上,对系统的环境保护和效率考虑较少。本文以运行成本最低、污染物排放最低、能源综合利用率最高为目标函数,建立了多目标优化调度模型。采用法向边界交叉口(NBI)方法求解该模型,并采用偏小模糊集决策得到最优解。最后,以华中某工业园区的IES为例对该模型进行了验证。实例研究表明,所提出的优化调度模型总体上能使系统运行更加环保和高效。
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