Publication | Open Access
Impact of High PV Penetration on the Inter-Area Oscillations in the U.S. Eastern Interconnection
114
Citations
55
References
2017
Year
EngineeringU.s. Eastern InterconnectionPv PenetrationPhotovoltaic SystemPhotovoltaicsGeophysicsElectric Power TransmissionInter-area OscillationsGrid StabilityPower SystemsElectrical EngineeringHigh Pv PenetrationSolar PowerElectric Grid IntegrationPower System DynamicSmart GridElectrical TransmissionRooftop PhotovoltaicsDominant Oscillation Mode
This study explores the impact of high-photovoltaic (PV) penetration on the inter-area oscillation modes of large-scale power grids. A series of dynamic models with various PV penetration levels are developed based on a detailed model representing the U.S. Eastern Interconnection (EI). Transient simulations are performed to investigate the change of inter-area oscillation modes with PV penetration. The impact of PV control strategies and parameter settings on inter-area oscillations is studied. This paper finds that as PV increases, the damping of the dominant oscillation mode decreases monotonically. It is also observed that the mode shape varies with the PV control strategy and new oscillation modes may emerge under inappropriate parameter settings in PV plant controls.
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