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- W4226242547 abstract "In order to accurately characterize the influence of the magnetic field variation of Synchronous Condenser (SC) on the transient and steady-state parameters in the transient process, a model of the SC connected to UHVDC transmission system based on field-circuit-network Finite Element Method (FEM) was proposed. Firstly, the field-circuit coupled finite element model of the SC is established. The SC was connected to a typical HVDC system through double closed loop excitation control, and the combination of two-dimensional transient electromagnetic field, external circuit and power grid was realized. Then, the commutation failure of HVDC transmission system was simulated and compared with the results of traditional finite element model. Finally, based on the frozen permeability method, the transient and steady-state parameters of the SC under the failure of commutation were calculated in real time, and the variation rules of the transient and steady-state parameters under different operating conditions were studied. The results show that the saturation degree and distribution of the magnetic field are changed by the strong current, which leads to the decrease of the transient and steady-state parameters in the transient process. The larger the voltage change is, the smaller the initial lagging reactive power is, which leads to the higher the saturation degree of the magnetic field and the smaller the parameters of the transient state." @default.
- W4226242547 created "2022-05-05" @default.
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- W4226242547 date "2022-01-01" @default.
- W4226242547 modified "2023-10-13" @default.
- W4226242547 title "Transient and Steady-State Parameters of the Synchronous Condenser Based on Field-Circuit-Network Finite Element Method" @default.
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- W4226242547 doi "https://doi.org/10.1007/978-981-19-1870-4_105" @default.
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