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Unit Commitment×Optimale Vermogensstromberekening×State-estimatie van energiesystemen×
VakgebiedElektrotechniekElektrotechniekElektrotechniek
FamilieProcess / pipelineProcess / pipelineProcess / pipeline
Jaar van ontstaan195919621970
GrondleggerCharles J. BaldwinJean CarpentierFred Schweppe
TypeCombinatorial optimization for generator turn-on/turn-off schedulingNonlinear constrained optimization for power system operationReal-time state estimation using measurements and physical models
Oorspronkelijke bronBaldwin, C. J., Dale, K. M., & Dittrich, R. F. (1959). A study of the economic shutdown of generating units in daily dispatch. AIEE Transactions, 78(3), 272-282. link ↗Carpentier, J. (1962). Contribution à l'étude du dispatching économique. Bulletin de la Société Française des Électriciens, 8(3), 431-447. link ↗Schweppe, F. C., & Wildes, J. (1970). Power system static-state estimation: III system implementation. IEEE Transactions on Power Apparatus and Systems, 89(1), 120-125. link ↗
AliassenUC, Generator Commitment, Thermal Unit SchedulingOPF, Economic Dispatch with ConstraintsPSSE, WLS State Estimation, Power Flow State Estimation
Verwant333
SamenvattingUnit Commitment (UC) is the problem of deciding which power generation units should be switched on or off over a planning horizon (typically 24-168 hours) to minimize total operating cost while meeting demand and reserve requirements. Introduced by Baldwin et al. in 1959, UC is a fundamental scheduling problem in power system operations, combining combinatorial optimization (which units to commit) with continuous optimization (optimal power output). UC remains one of the most important and computationally challenging problems in power systems.Optimal Power Flow (OPF) is a fundamental optimization framework for computing the most economical and secure operating point of an electrical power system. Introduced by Jean Carpentier in 1962, OPF minimizes operational costs (fuel, losses, or other expenses) while satisfying physical and operational constraints. Modern electric grids depend on OPF for real-time economic dispatch, security analysis, and planning, making it one of the most important problems in power systems engineering.Power System State Estimation (PSSE) is a real-time algorithm that estimates the voltage and phase angle at every bus in a power grid from a set of noisy, redundant measurements. Introduced by Schweppe in 1970, it combines measurements (power flows, voltage magnitudes) with the physical power flow model to produce the most likely system state. State estimation is the foundation of modern grid control centers, providing operators with an accurate digital representation of the actual network.
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ScholarGateMethoden vergelijken: Unit Commitment · Optimal Power Flow · Power System State Estimation. Geraadpleegd op 2026-06-17 via https://scholargate.app/nl/compare