Generalized User Equilibrium for Coordinated Operation of Power-Traffic Networks

Chengcheng Shao, Ke Li, Tao Qian, Xifan Wang, M. Shahidehpour
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Abstract

The increasing electric vehicles (EVs) imposes great challenges on the coordination between the power distribution network (PDN) and transportation network (TN). This paper proposes the generalized user equilibrium (GUE) method to manage their interactions. First, the concept of GUE is proposed to describe the steady-state distribution of the traffic flow as extension of user equilibrium (UE) which could no longer exist due to the influence of PDN operation on TN. Second, the GUE model is established via which the operation of PDN and TN is coordinated with traffic assigned and power generation scheduled simultaneously. Finally, an efficient solution algorithm is proposed by decomposing the primal problem into a master problem and a series of feasible and optimal path generation sub-problems for individual origin-destination (O-D) pairs. The effectiveness of the proposed method has been verified via case studies based on a real-world city TN. The results demonstrate the necessity of GUE and its potential in improving the operation of coupled power-traffic networks.
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电力-交通网络协调运行的广义用户均衡
随着电动汽车的不断发展,配电网与交通网之间的协调也面临着巨大的挑战。本文提出了广义用户平衡(GUE)方法来管理它们之间的交互。首先,提出了GUE的概念,将流量流的稳态分布描述为用户均衡(UE)的延伸,UE由于PDN运行对TN的影响而不复存在。其次,建立了GUE模型,通过该模型使PDN和TN的运行协调,同时进行流量分配和发电计划。最后,将原始问题分解为单个出发地对的主问题和一系列可行和最优路径生成子问题,提出了一种高效的求解算法。基于实际城市TN的实例研究验证了该方法的有效性,结果表明了GUE的必要性及其在改善电力-交通耦合网络运行方面的潜力。
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