IEEE Transactions on Smart Grid · 2012 · 158 citations · 7 references
Distributed Energy SystemEngineeringDistribution NetworksHome Energy StorageOptimal ManagementDistributed Energy GenerationStorage SystemsEnergy Price ArbitrageBattery SystemRenewable Energy StorageSystems EngineeringRenewable Energy SystemsPower SystemsElectrical EngineeringMechanical BatteriesEnergy StorageBattery-based Storage SystemEnergy Storage SystemSmart GridEnergy ManagementBattery ConfigurationOptimal Management StrategyBatteries
The paper proposes the modeling and the optimal management of a hot-temperature (sodium nickel chloride) battery system coupled with wind generators connected to a medium voltage grid. A discrete-time model of the storage device reproducing the battery main dynamics (i.e., state of charge, temperature, current, protection, and limitation systems) has been developed. The model has been validated through some experimental tests. An optimal management strategy has been implemented based on a forward dynamic programming algorithm, specifically developed to exploit the energy price arbitrage along the optimization time horizon (“generation shifting”). Taking advantage of this strategy wind generation performances can be enhanced and adapted to load demand, obtaining an increased economic gain measured by the difference between the economic revenue obtained with and without the proposed generation shifting policy.
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Value Analysis of Battery Energy Storage Applications in Power Systems
A. Oudalov, Daniel Chartouni, C. Ohler et al. · 2006 · 218 citations