Optimal Operation of Interdependent Power Systems and Electrified Transportation Networks
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Date
2018
Authors
M. Hadi Amini
Orkun Karabasoglu
Journal Title
Journal ISSN
Volume Title
Publisher
MDPI
Open Access Color
GOLD
Green Open Access
Yes
OpenAIRE Downloads
OpenAIRE Views
Publicly Funded
No
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. The 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 the power system to find the locational marginal price at load buses where charging stations are connected. Finally the electricity prices were communicated from the charging stations to the EVs and the loop is closed. Locational electricity price acts as the shared parameter between the two optimization problems i.e. optimal power flow and optimal routing problem. Electricity price depends on the power demand which is affected by the charging of EVs. On the other hand location of EV charging stations and their different pricing strategies might affect the routing decisions of the EVs. Our novel approach that combines the electrified transportation with power system operation holds tremendous potential for solving electrified transportation issues and reducing energy costs. The effectiveness of the proposed approach is demonstrated using Shanghai transportation network and IEEE 9-bus test system. The results verify the cost-savings for both power system and transportation networks.
Description
Keywords
electrified transportation network, power systems operation, locational marginal price, electrified vehicle, charging station, least cost route optimization, ROUTING PROBLEM, HYBRID, VEHICLES, ENERGY, OPTIMIZATION, CONSUMPTION, EMISSIONS, DEMAND, MODEL, COST, Technology, T, power systems operation, Systems and Control (eess.SY), electrified transportation network; power systems operation; locational marginal price; electrified vehicle; charging station; least cost route optimization, Electrical Engineering and Systems Science - Systems and Control, electrified transportation network, FOS: Electrical engineering, electronic engineering, information engineering, electrified vehicle, charging station, least cost route optimization, locational marginal price
Fields of Science
0211 other engineering and technologies, 02 engineering and technology, 0202 electrical engineering, electronic engineering, information engineering
Citation
WoS Q
Scopus Q

OpenCitations Citation Count
85
Source
Energies
Volume
11
Issue
Start Page
196
End Page
Collections
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Citations
CrossRef : 85
Scopus : 82
Captures
Mendeley Readers : 93
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