IEEE Transactions on Power Systems · 2000 · 82 citations · 7 references
Mathematical ProgrammingPower EngineeringEngineeringDynamic Resource AllocationAvailable Transfer CapabilityOperations ResearchLogisticsSystems EngineeringCombinatorial OptimizationPower SystemsCapacity ManagementStatic Optimization ApproachCapacity PlanningComputer EngineeringPower System OptimizationComputer SciencePower NetworkNonlinear Programming MethodologyUnit CommitmentSmart GridEnergy ManagementBusinessDynamic ProgrammingResource AllocationActual Power System
This paper deals with the development of a nonlinear programming methodology for evaluating available transfer capability. The main feature of the approach is the capability to treat static and dynamic security constraints in a unique integrated piece of software. The algorithm has been implemented and tested on an actual power system.
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