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VSC-HVDC system stability augmentation with bridge type fault current limiter

机译:VSC-HVDC系统稳定增强桥式故障电流限制器

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Voltage source converter high voltage DC (VSC-HVDC) system has number of advantages over traditional line commutated converter HVDC (LCC-HVDC). However, VSC-HVDC system is exposed to high current due to faults having great negative effect on converters. In order to limit fault current to relatively low level, bridge type fault current limiter (BFCL) for VSC-HVDC system has been proposed in this study. Fault current limiters are placed with the AC gird sides of VSC-HVDC system. Real and reactive power controller for the VSC-HVDC has been developed based on current control mode. Symmetrical as well as unsymmetrical faults are applied to evaluate the effectiveness of proposed BFCL controller in order to limit the fault current and improve system stability. Simulations are carried out with real time digital simulator (RTDS) to validate the efficacy of the proposed BFCL solution. The results show the potential of the proposed scheme to limit the fault current and improve greatly the system performance.
机译:电压源转换器高压DC(VSC-HVDC)系统具有与传统线路换向转换器HVDC(LCC-HVDC)的优势次数。然而,由于对转换器具有很大的负面影响,VSC-HVDC系统暴露于高电流。为了限制故障电流以相对较低的水平,在本研究中提出了VSC-HVDC系统的桥式故障电流限制器(BFCL)。故障电流限制器置于VSC-HVDC系统的AC GIRD侧面。基于电流控制模式开发了用于VSC-HVDC的实际和无功功率控制器。对称的以及不对称的故障应用于评估所提出的BFCL控制器的有效性,以限制故障电流并提高系统稳定性。使用实时数字模拟器(RTD)进行仿真以验证所提出的BFCL溶液的功效。结果表明,建议方案的潜力限制了故障电流并提高了系统性能。

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