ATwo-Stage Framework for Optimal Planning and Operation of EV Charging Stations in Distribution Networks
Electric vehicle (EV) usage has increased significantly in the past few years, which may
create challenges for distribution system operators due to EV charging needs. In this paper,
we propose an approach for planning and operating EV charging stations, considering
the challenges that distribution networks may face. A two-step framework is proposed
in this paper. First, the optimal size and location of a charging station is determined
using a multi-objective optimization problem considering minimizing power losses and
voltage drop while maximizing load placements. Then, an optimal scheduling scheme is
employed to charge and discharge the vehicles on the selected buses. Simulation studies
were conducted using IEEE 33- and 123-bus systems; the results show that the proposed
framework significantly enhances the buses? voltages and line power flows. In order to
plan for charging stations, several factors need to be considered, such as optimal size and
location, the daily load curve for the given system, the time of use (TOU), and the charging
patterns of EV owners. Without careful planning and operation, the system may suffer
vulnerability and line overloading, which may lead, eventually, to cascading outages and
interruptions. By improving grid utilization, reducing losses, and enabling coordinated EV
charging and discharging, the proposed framework supports more sustainable energy use
and facilitates the integration of electric mobility into future low-carbon power systems.