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Model Predictive Control Approach for Bridge-Type Fault Current Limiter in VSC-HVDC System

机译:VSC-HVDC系统桥式故障电流限制器模型预测控制方法

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摘要

Voltage source converter-high-voltage DC (VSC-HVDC) system has number of advantages over traditional line commutated converter 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, this paper proposes model predictive control (MPC)-based bridge-type fault current limiter (BFCL) for VSC-HVDC system. Fault current limiters are placed with the AC grid sides of VSC-HVDC system. Finite control set MPC is developed for the control of VSC-HVDC system along with BFCL. BFCL controller has been developed to insert resistance and reactance during disturbances. Balanced and unbalanced disturbances are applied to evaluate the effectiveness of proposed BFCL controller so as to limit the fault current and augment transient stability. Real-time digital simulator has been used to conduct simulation works. The performance of the proposed MPC-BFCL is compared with that of series dynamic braking resistor (SDBR). Comparative simulation results show that the proposed MPC-BFCL is superior over SDBR in improving dynamic stability of VSC-HVDC system.
机译:电压源转换器 - 高压DC(VSC-HVDC)系统具有传统的线路换向转换器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。为了将故障电流限制为相对较低的水平,本文提出了用于VSC-HVDC系统的模型预测控制(基于MPC)的桥接型故障电流限制器(BFCL)。故障电流限制器与VSC-HVDC系统的AC电网侧放置。有限控制集MPC是为了控制VSC-HVDC系统以及BFCL而开发。 BFCL控制器已经开发出来以在干扰期间插入电阻和电抗。应用平衡和不平衡的扰动来评估所提出的BFCL控制器的有效性,以限制故障电流和增强瞬态稳定性。实时数字模拟器已被用于进行仿真工作。将所提出的MPC-BFCL的性能与串联动态制动电阻(SDBR)进行比较。比较仿真结果表明,提出的MPC-BFCL在改善VSC-HVDC系统的动态稳定性方面优于SDBR。

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