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- W2792694493 abstract "With the growing concerns about global warming and greenhouse gas emission and carbon footprint drop, all the countries have been moving towards use of renewable energy to meet the future electricity demand. Currently, worldwide solar PV interconnection with power system is increasing. It leads to the many technical problems in the conventional power system network. Large scale PV system connected with power system, to maintain the power supply-demand balance of the system, some the existing fossil fuels power unit needs to be reduced comparatively for maintain the power supply-demand balance of the system. Since the PV system have zero inertia. This leads to the lower system inertia and the higher generator reactance, and hence, the power system transient stability may negatively be affected. This paper investigates the transient stability of the systems with different levels of PV penetration. A two-machine test case system developed using classical model for a synchronous generator, a PV system model and a constant impedance model for load is considered. The potential impact of significant PV penetration on the transient stability is assessed by a numerical simulation using MATLAB-SIMULINK. The critical clearing time (CCT) is calculated by using numerical simulation. The simulation results exhibit both harmful and favorable impacts of increased PV penetration on transient stability performance." @default.
- W2792694493 created "2018-03-29" @default.
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- W2792694493 date "2017-03-01" @default.
- W2792694493 modified "2023-09-26" @default.
- W2792694493 title "Investigation on the impact of high-penetration of PV generation on transient stability" @default.
- W2792694493 cites W1974475661 @default.
- W2792694493 doi "https://doi.org/10.1109/itcosp.2017.8303165" @default.
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