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Residual Compensation for Ground Impedance Relay With Applications in UHV Transmission Lines

机译:接地阻抗继电器的剩余补偿及其在特高压输电线路中的应用

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The impedance algorithm in distance protection for high voltage (HV) and extra high voltage (EHV) lines, although neglecting the influence of shunt capacitance, is able to produce satisfactory performance. However, the accuracy of the algorithm is significantly reduced when applying to ultra high voltage (UHV) lines due to the larger P.U. line shunt capacitance and longer transmission radius. Therefore, the distributed parameter model should be adopted, and the relay should be set based on the hyperbola function between measuring impedance and the fault distance. However, how to define and set the indexes in relay ever defined with lumped parameters, such as the residual compensation coefficient, is still unresolved. In response to this question, the paper models the UHV system with distributed parameters and introduces the concept of virtual equivalent line length controlled by zero sequence system impedance, and then proposes a novel residual compensation coefficient. Case studies and RTDS tests show that the relay with proposed coefficient offers good performance for the simulated cases. The results also can be extended into other applications, such as the design of zero sequence reactance relay, fault location, fault phase selection, power swing blocking, and load blocking components.
机译:高压(HV)和超高压(EHV)线路距离保护中的阻抗算法尽管忽略了并联电容的影响,但仍能产生令人满意的性能。但是,由于P.U较大,在应用于超高压(UHV)线路时,算法的准确性会大大降低。线路并联电容和更长的传输半径。因此,应采用分布参数模型,并应根据测量阻抗和故障距离之间的双曲线函数设置继电器。但是,如何定义和设置继电器参数(例如剩余补偿系数)的集总参数仍未解决。针对这一问题,本文对具有分布式参数的特高压系统进行建模,并引入了由零序系统阻抗控制的虚拟等效线长的概念,并提出了一种新的残差补偿系数。案例研究和RTDS测试表明,具有建议系数的继电器在模拟情况下具有良好的性能。结果还可以扩展到其他应用,例如零序电抗继电器的设计,故障位置,故障相位选择,功率摆幅闭锁和负载闭锁组件。

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