基于广域信息传输的输电线路舞动在线监测与防舞动技术研究

Shuhuai An, Zhen Wei, Lei Tang, Yijia Li
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引用次数: 0

摘要

摘要基于广域行波信息传输和跳波机理,对传输线跳波情况进行了诊断。分析了广域初始行波传播特性,利用小波变换对传输线跳频行波信息进行了分析。测量电压行波能量分布,实现输电线路的在线监测与诊断。为了研究输电线路的跳幅,建立了有限元分析模型。设计了失谐摆防跳装置,建立了失谐摆动力学方程,采用理论方程法和稳定性理论方法研究了导致传输线跳的临界风速。通过实证分析方法,对输电线路跳舞监测和防跳舞效果进行了分析。实验表明,当传输线以较慢的速度跳舞时,基于广域信息的在线监测方法监测目标间隔条在[1,3]之间相邻两帧之间的运动,处理速度比其他技术快138.2帧/秒,成功地跟踪了传输线的跳舞目标。在抗舞蹈测试中,在加入抗舞蹈者之前,在风速为18m/s和14m/s时,传输线振幅从一开始就达到12,12m/s,以引发舞蹈。反舞器安装后,大多数情况下振幅保持在[0,1]之间,反舞器具有良好的反舞效果。
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Research on online monitoring and anti-dance technology of transmission line dance based on wide-area information transmission
Abstract This paper diagnoses the transmission line dancing situation based on the wide-area traveling wave information transmission and dancing mechanism. The characteristics of the wide-area initial traveling wave propagation are analyzed, and the traveling wave information of transmission line dancing is analyzed using wavelet transform. Measure the voltage traveling wave energy distribution for online monitoring and diagnosis of transmission lines. To study the dancing amplitude of transmission lines, a finite element analysis model is created. The detuned pendulum anti-dancing device is designed, the detuned pendulum dynamics equation is constructed, and the critical wind speed leading to transmission line dancing is investigated by the theoretical equation method and the stability theory method. Through the empirical analysis method, the transmission line dance monitoring and the anti-dance effect are analyzed. The experiments show that when the transmission line dances at a slower speed, the online monitoring method based on wide-area information monitors the motion of the target spacer bar between two neighboring frames between [1,3], and the processing speed is 138.2 frames per second faster than the other techniques, which is successful in tracking the dancing target of the transmission line. In the anti-dance test, before the anti-dancer was added, the transmission line amplitude reached 12,12m/s from the beginning at a wind speed of 18m/s and 14m/s to provoke dance. After the installation of the anti-dancer, the amplitude is maintained between [0,1] in most cases, and the anti-dancer has a good anti-dance effect.
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来源期刊
Applied Mathematics and Nonlinear Sciences
Applied Mathematics and Nonlinear Sciences Engineering-Engineering (miscellaneous)
CiteScore
2.90
自引率
25.80%
发文量
203
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