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- W4380898081 abstract "The rapid growth of wind power is not coordinated with the planning and development of the power grid, which may lead to transmission line overload when N-l failure occurs in the centralized transmission channel of large-scale wind power. The dynamic heat setting of transmission line takes temperature as the essential factor to limit the thermal load capacity of transmission line. In this paper, based on the thermal balance model of transmission components, the characteristics of thermal inertia of transmission components are revealed through the simulation analysis of three kinds of outgoing wind power transmission components under sudden current change. The thermal inertia effect of overhead lines is more significant than that of transformers. Then, taking the overhead line as an example, the current carrying capacity and temperature of the overhead line are simulated under three typical climbing scenes, and the abandoned air volume is compared and analyzed under the limit of the maximum allowable temperature of the transmission component. It is found that the thermal inertia effect of transmission components becomes more significant with the increase of wind energy fluctuation." @default.
- W4380898081 created "2023-06-17" @default.
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- W4380898081 date "2023-02-24" @default.
- W4380898081 modified "2023-09-23" @default.
- W4380898081 title "Study on Characteristics and Simulation Analysis of Thermal Inertia of Grid-connected Transmission Components of Wind Farm" @default.
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- W4380898081 doi "https://doi.org/10.1109/eecr56827.2023.10150116" @default.
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