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Two-Stage Joint Optimal Scheduling of a Distribution Network With Integrated Energy Systems

机译:集成能源系统配电网的两阶段联合优化调度

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The coordinated operation of an integrated energy system (IES) and a distribution network is the inevitable development trend of the energy Internet of the future. The day-ahead optimal scheduling of the IES is an important way to improve new energy efficiency and the energy economy. When the IES and the distribution network exchange electrical energy, the voltage of the distribution network may be out of limit. This article presents a two-stage joint optimal scheduling method for a distribution network with IESs to improve the economy of the IESs and the safety of the distribution network. In the first stage, the user’s demand response and the electrical energy interaction between IESs are considered, and the schedulable potential of the systems is fully tapped. In the second stage, a bi-level scheduling model is adopted: the upper model takes the distribution network as the control object and reduces the power loss by adjusting the exchange power between the distribution network and the IESs. The lower model takes the IESs as the control objects and obtains the scheme with the lowest cost in each IES through multi-objective particle swarm optimization. Taking the IEEE 33-node distribution system as an example, simulation research is performed to show that the total network loss is 17.01% lower and the total cost is 5.36% lower than the method without two-stage optimal scheduling, which verifies the effectiveness of the proposed method.
机译:集成能源系统(IE)和分销网络的协调运作是未来能源互联网的必然发展趋势。 IES的前方最佳调度是提高新能源效率和能源经济的重要途径。当IES和分配网络交换电能时,分配网络的电压可能超出限制。本文介绍了一种双级联合最优调度方法,用于分销网络,以改善IESS的经济和分销网络的安全性。在第一阶段,考虑用户的需求响应和IESS之间的电能相互作用,并且系统的可调度潜力是完全挖掘的。在第二阶段,采用双级调度模型:上层模型将分配网络作为控制对象,通过调整分配网络和IESS之间的交换功率来降低功率损耗。较低模型将IESS作为控制对象,通过多目标粒子群优化获得每个IES中最低成本的方案。以IEEE 33节点分配系统为例,进行了仿真研究,表明总网络损耗降低了17.01%,总成本低于无两级最佳调度的方法,验证了效果所提出的方法。

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