Journal Article

·2023

Multi-Objective EV Charging and Comfort Management Considering V2G Functionality and Distribution System Constraints

A. Selim Türkoğlu YTU , Hilmi Cihan Güldorum YTU , Ozan Erdinç YTU

Abstract

Planning electric vehicle (EV) charging management has become a significant issue as the percentage of EVs on the road rises. The adverse effects of EVs on the distribution system (DS) can be mitigated by carefully managing their charging. In addition, the vehicle-to-grid (V2G) service enables EVs to supply energy when the power system needs it. In this study, the proposed multi-objective optimization model, which is developed in the form of mixed-integer quadratically constrained programming (MIQCP), examines the comfort of EVs participating in the grid ancillary services in an EV parking lot (EVPL) concept and the cost of the EVPL operator simultaneously. Moreover, the effect of the proposed model on the important variables of the DS, such as power flow, voltage, and line losses, is examined. The developed model is evaluated using the IEEE 33-bus test system with four different case studies and a 15-minute time resolution. Thanks to the multi-objective approach, the results demonstrate that the comfort of EVs during ancillary services can be raised by taking the cost of charging and comfort violation into account jointly.

Keywords

Vehicle-to-grid Energy management system Grid Electric vehicle Automotive engineering Computer science Energy management Power flow Service (business) Integer programming Power (physics) Electric power system Engineering Reliability engineering Simulation Energy (signal processing) Mathematics

Subject Areas

Electric Vehicles and Infrastructure ·Electrical and Electronic Engineering ·Physical Sciences
Advanced Battery Technologies Research ·Automotive Engineering ·Physical Sciences
Smart Grid Energy Management ·Electrical and Electronic Engineering ·Physical Sciences

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