Technical And Economic Analysis Of The R-Type Sfcl For Hvdc Grids Protection

IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY(2017)

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摘要
Mainly used in ac grids, resistive-type superconducting fault current limiters may be still more interesting for dc systems due to their capability to reduce high short circuit currents appearing in case of dc cable fault. This limiter reduces the breaking capability, speed, and energy requirements of the required dc circuit breaker allowing the implementation of electromechanical breakers for fault current interruption. These breakers have lower breaking capability, on-load losses, and investment costs in comparison with hybrid circuit breakers based on power electronics. This paper presents a technical and economic analysis of a superconducting fault current limiter used in a radial three-terminal high voltage dc grid to protect a cable link. Based on simulation studies using an electromagnetic transient program, an effective system protection will be demonstrated with special attention to the continuity of power flow through healthy parts of the grid.
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关键词
HVDC transmission, High-temperature superconductors, Mathematical model, Fault currents, Temperature dependence, Circuit faults, Circuit breakers, Circuit breakers, dc circuit breaker (DCCB), Electro-Magnetic Transient Program (EMTP), fault current limiter, high voltage direct current (HVDC), modular multilevel converter (MMC), protection, rare earth barium copper oxide (REBCO), second-generation high-temperature-superconducting tape (2G HTS), superconducting fault current limiter (SFCL)
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