Litcius/Paper detail

Impact of Electric Vehicle Charging on Power Distribution Systems: A Case Study of the Grid in Western Kentucky

Pranoy Roy, Reza Ilka, Jiangbiao He, Yuan Liao, Aaron M. Cramer, Justin McCann, Samuel Delay, Steven Coley, Melissa J. Geraghty, Sachindra Dahal

2023IEEE Access54 citationsDOIOpen Access PDF

Abstract

With the growing adoption of both residential and commercial electric vehicles (EV) and the rapid deployment of EV charging stations, it is of paramount importance to assess the potential overloading impact of intensive EV charging on the operation and planning of power distribution systems. Targeting at the west Kentucky rural area, this research leverages the Distribution Resource Integration and Value Estimation (DRIVE) and HotSpotter software tools to investigate the potential impact of EV charging on the operation of regional distribution systems and the lifetime degradation of power transformers. The research outcome helps identify possible distribution system overload risks and mitigation solutions to meet future intensive EV charging necessity under assumed EV adoption scenarios. Possible overloading in the distribution systems and undervoltage violations are examined. In addition, the overload impact of EV charging is investigated by conducting a multi-physics reliability analysis of a distribution transformer.

Topics & Concepts

Software deploymentTransformerReliability engineeringDistribution gridElectric vehicleDistribution transformerGridComputer scienceElectric power systemElectrical engineeringAutomotive engineeringPower gridPower (physics)EngineeringVoltagePhysicsOperating systemMathematicsQuantum mechanicsGeometryElectric Vehicles and InfrastructureAdvanced Battery Technologies ResearchElectric and Hybrid Vehicle Technologies