IEEE Transactions on Power Systems · 2016 · 290 citations · 23 references
Unit CommitmentElectrical EngineeringSystem InertiaEngineeringSmart GridEnergy ManagementPower SystemComputer EngineeringHome Energy StorageSystems EngineeringPower System OptimizationEnergy Storage SystemPower System ControlPower System DynamicFrequency ControlPower SystemsBattery Energy Storage
The decline of system inertia due to the increasing displacement of synchronous units by renewable units has introduced a major challenge on the frequency dynamics management of a power system. This paper discusses how fast-response battery energy storages can be used to maintain the frequency dynamic security. Immediately following a generation loss, the injections of batteries are adjusted instantly to ensure minimum power imbalance in the system. This control strategy is included in a novel formulation of the frequency dynamics constrained unit commitment, in which the impact of wind uncertainty is dealt with using interval-based optimization. The reformulation-linearization technique is applied to reformulate the original nonlinear model as a mixed-integer linear programming problem. Case studies on a six-bus system and the modified RTS-79 system demonstrate that the proposed method guarantees frequency security while still preserving economy without curtailing wind generation.
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Gauthier Delille, Bruno François, Gilles Malarange · IEEE Transactions on Sustainable Energy · 2012 · 757 citations