Optimal Operation of Interdependent Power Systems and Electrified Transportation Networks
M. Hadi Amini, Orkun Karabasoglu

TL;DR
This paper presents a novel iterative framework integrating EV routing and power system optimization to reduce energy costs and improve efficiency in interdependent transportation and power networks.
Contribution
It introduces a new method combining EV routing and power flow optimization through shared electricity prices, enhancing accuracy and cost savings in interconnected systems.
Findings
Demonstrated cost savings in Shanghai network and IEEE 9-bus system.
Improved accuracy in EV charging demand estimation.
Effective coordination between transportation routing and power system operation.
Abstract
Electrified transportation and power systems are mutually coupled networks. In this paper, a novel framework is developed for interdependent power and transportation networks. Our approach constitutes solving an iterative least cost vehicle routing process, which utilizes the communication of electrified vehicles (EVs) with competing charging stations to exchange data, such as electricity price, energy demand, and time of arrival. EV routing problem is solved to minimize the total cost of travel using the Dijkstra algorithm with the input from EVs battery management system, electricity price from charging stations, powertrain component efficiencies, and transportation network traffic conditions. Through the bidirectional communication of EVs with competing charging stations, EVs charging demand estimation is done much more accurately. Then, the optimal power flow problem is solved for…
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Taxonomy
TopicsElectric Vehicles and Infrastructure · Advanced Battery Technologies Research · Transportation and Mobility Innovations
