IEEE Transactions on Intelligent Transportation Systems · 2015 · 317 citations · 58 references
EngineeringHybrid Electric VehicleScheduling AlgorithmCentralized ChargingPower SystemGenetic AlgorithmSystems EngineeringHybrid Optimization TechniqueCharging StrategyPower SystemsElectrical EngineeringComputer EngineeringPower System OptimizationEnergy StorageBattery Swapping ScenarioEvolutionary ProgrammingSmart GridEnergy ManagementBattery Configuration
Centralized charging of electric vehicles (EVs) based on battery swapping is a promising strategy for their large-scale utilization in power systems. The most outstanding feature of this strategy is that EV batteries can be replaced within a short time and can be charged during off-peak periods or on low electric price and scheduled in any battery swap station. This paper proposes a novel centralized charging strategy of EVs under the battery swapping scenario by considering optimal charging priority and charging location (station or bus node in a power system) based on spot electric price. In this strategy, a population-based heuristic approach is designed to minimize total charging cost, as well as to reduce power loss and voltage deviation of power networks. We introduce a dynamic crossover and adaptive mutation strategy into a hybrid algorithm of particle swarm optimization and genetic algorithm. The resulting algorithm and several others are executed on an IEEE 30-bus test system, and the results suggest that the proposed one is effective and promising for optimal EV centralized charging.
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Modeling of Load Demand Due to EV Battery Charging in Distribution Systems
Kejun Qian, Chengke Zhou, Malcolm Allan et al. · IEEE Transactions on Power Systems · 2010 · 1.2K citations