Optimal Scheduling Method for the Distribution Network Integrated with Multi-Energy Systems Considering Flexible Regulation Ability

H. Hui, Rui Li, Yang Zhao, Ming Wang
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Abstract

With the increasing demand for clean and low-carbon energy in society, the distribution network will face the continuous integration of multiple energy systems in the future. This phenomenon brings great challenges to the safe operation of the distribution network. To solve this problem, this paper proposes an optimal scheduling method for the multi-energy integrated distribution network considering flexible regulation ability. Firstly, the flexible regulation ability is defined in this paper for the distribution network integrated with multi-energy systems. Secondly, various flexible regulation resources and regulation characteristics in the distribution network are analyzed. Then, the flexibility index is analyzed based on the interval variation model for multiple objects, such as sources, loads, energy conversion and storage, and pipeline network. Finally, the system optimization model considering flexible regulation ability is established and solved by the conventional particle swarm optimization method. By the proposed method, system flexibility and operation economy can be simultaneously improved in the multi-energy integrated distribution network. Case studies of an urban model verify the effectiveness of the proposed method.
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考虑柔性调节能力的多能源系统集成配电网优化调度方法
随着社会对清洁低碳能源需求的不断增加,配电网未来将面临多种能源系统的持续整合。这种现象给配电网的安全运行带来了极大的挑战。针对这一问题,本文提出了一种考虑柔性调节能力的多能综合配电网最优调度方法。首先,本文定义了多能源系统集成配电网的柔性调节能力。其次,分析了配电网中各种柔性调节资源和调节特点。然后,基于区间变化模型,对源、负荷、能量转换与存储、管网等多目标的柔性指标进行了分析。最后,建立了考虑柔性调节能力的系统优化模型,并用传统的粒子群优化方法进行求解。该方法可以同时提高多能综合配电网的系统灵活性和运行经济性。一个城市模型的实例研究验证了该方法的有效性。
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