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Resonancia Subsíncrona×Estimación del Estado del Sistema Eléctrico×
CampoIngeniería eléctricaIngeniería eléctrica
FamiliaProcess / pipelineProcess / pipeline
Año de origen19771970
Autor originalE. William Kimbark, Robert FarmerFred Schweppe
TipoIdentification and mitigation of subsynchronous oscillations in AC systemsReal-time state estimation using measurements and physical models
Fuente seminalFarmer, R. G., Natel, B., & Schulz, R. P. (1977). The bushland event of September 10, 1977. IEEE Transactions on Power Apparatus and Systems, 96(4), 1315-1328. 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 ↗
AliasSSR, Subsynchronous control interactions, Torsional oscillationsPSSE, WLS State Estimation, Power Flow State Estimation
Relacionados33
ResumenSubsynchronous Resonance (SSR) is a phenomenon where frequencies below the synchronous frequency (50/60 Hz) are amplified in power systems, causing oscillations that can damage turbines. First observed in Bushland, Texas in 1977, SSR results from interaction between series-compensated transmission lines and synchronous generators. Understanding and mitigating SSR is critical for stable grid operation, particularly with high levels of series compensation or power electronics.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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  1. v1
  2. 3 Fuentes
  3. PUBLISHED

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ScholarGateComparar métodos: Subsynchronous Resonance · Power System State Estimation. Recuperado el 2026-06-18 de https://scholargate.app/es/compare