• Title of article

    Optimal Charging/Discharging Control of Electric Vehicle Charging Station Considering Grid Resiliency

  • Author/Authors

    Hadian ، Emad Department of Electrical Engineering - Islamic Azad University, Yazd Branch , Akbari ، Hamidreza Department of Electrical Engineering - Islamic Azad University, Yazd Branch , Farzinfar ، Mehdi School of Engineering - Damghan University , Saeed ، Amin Department of Electrical Engineering - Islamic Azad University, Yazd Branch

  • From page
    453
  • To page
    464
  • Abstract
    Management and control of charging/discharging of Electric vehicles (EVs) with the aim of profitability for the Distribution System Operator (DSO) and the private sector is one of the challenges in operating Electric vehicles Charging Stations (EVCS). This paper proposes a novel methodology for optimal planning of charging/discharging of the hybrid wind-EVCS which on the one hand, lead to correction of the load curve and on the other hand, improves the grid resilience in extreme weather conditions. In the proposed methodology, since the weatherbased outages lead to consumer interruptions, the idea of profitsharing between DSO and EVCS owners is proposed to incentivize the owner to implement the obtained charging/discharging schedule. To this end, firstly, a Monte-Carlo based stochastic framework for forecasting the probability of weatherbased line outages and also modelling uncertainties is devised. Then, a resilience-oriented multi-objective optimization algorithm is presented that, while coordinating the operation of the wind turbine, EV management and Demand Response Programs (DRP), the profits of both EVCS and DSO are maximized during daily operation planning. The resiliency improvement of the proposed method is evaluated by using metrics. The obtained optimal results prove the effectiveness of the proposed method in increasing resiliency and benefits for all players.
  • Keywords
    Control of Charging , Discharging , Electric Vehicle , Extreme Weather Condition , Multi , Objective Optimization , Resilience
  • Journal title
    International Journal of Industrial Electronics, Control and Optimization
  • Journal title
    International Journal of Industrial Electronics, Control and Optimization
  • Record number

    2687926