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Forward Fault Identification Element based Transient Power for DC line Protection in UHVDC System

机译:基于FIRE FATURE识别元件基于UHVDC系统的直流线路保护瞬态电力

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DC line fault is a major threat to the Ultra High-Voltage Direct-Current (UHVDC) system in terms of reliability, since the long-distance bulk-power is involved. This paper proposes a forward fault identification element for DC line protection in the UHVDC system. The forward fault identification element is based on transient power (TP), which is defined as the product of transient voltage and transient current within specific frequency band. Since the DC line attenuation characteristics is fully considered, the forward fault identification element is able to detect the fault along the whole long line from forward external fault. A fault pole selection criterion based on transient power is also proposed. If a directional element is employed, a quick and reliable protection scheme can be formed. The proposed forward fault identification element is able overcome the problem of attenuation effect of long DC line suffered by the some conventional protection methods. Simulation studies carried out in PSCAD/EMTDC and the test with field fault-recording data have validated the effectiveness of the proposed forward fault identification element and fault pole selection criterion.
机译:直流线路故障是对超高压直流(UHVDC)系统在可靠性方面的主要威胁,因为涉及长距离大量电源。本文提出了UHVDC系统中直流线路保护的前向故障识别元件。前向故障识别元件基于瞬态功率(TP),其被定义为特定频带内的瞬态电压和瞬态电流的乘积。由于完全考虑了直流线衰减特性,因此前向故障识别元件能够从前向外故障检测整个长线的故障。还提出了一种基于瞬态功率的故障杆选择标准。如果采用方向元件,则可以形成快速可靠的保护方案。所提出的前向故障识别元件能够克服由一些传统保护方法遭受的长直流线的衰减效果问题。在PSCAD / EMTDC中进行的仿真研究以及具有现场故障记录数据的测试已经验证了所提出的前向故障识别元件和故障极选择标准的有效性。

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