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Adaptive Current Differential Protection Schemes for Transmission-Line Protection

机译:传输线保护的自适应电流差动保护方案

摘要

Throughout the history of power system protection, researchers have strived to increase sensitivity and speed of apparatus protection systems without compromising security. With the significant technological advances in wide-area measurement systems, for transmission system protection, current differential protection scheme outscores alternatives like overcurrent and distance protection schemes. Therefore, in this paper, we address this challenge by proposing a methodology for adaptive control of the restraining region in a current differential plane. First an error analysis of conventional phasor approach for current differential protection is provided using the concept of dynamic phasor. Subsequently, we extend the methodology for protection of series compensated transmission lines. Finally, we also evaluate the speed versus accuracy conflict using phasorlets. Electromagnetic Transient Program simulations are used to substantiate the claims. The results demonstrate the utility of the proposed approach.
机译:在整个电力系统保护的历史上,研究人员一直致力于提高设备保护系统的灵敏度和速度,同时又不影响安全性。随着广域测量系统技术的重大进步,在传输系统保护方面,电流差动保护方案优于过电流和距离保护方案等替代方案。因此,在本文中,我们通过提出一种在电流差分平面中自适应控制约束区域的方法来应对这一挑战。首先,利用动态相量的概念对用于电流差动保护的传统相量方法进行了误差分析。随后,我们扩展了用于保护串联补偿传输线的方法。最后,我们还使用相量评估速度与精度冲突。电磁瞬态程序模拟用于证实权利要求。结果证明了该方法的实用性。

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