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A Fiber Bragg Grating-Based Dynamic Tension Detection System for Overhead Transmission Line Galloping

机译:基于光纤光栅的架空输电线路舞动动态张力检测系统

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摘要

Galloping of overhead transmission lines (OHTLs) may induce conductor breakage and tower collapse, and there is no effective method for long distance distribution on-line galloping monitoring. To overcome the drawbacks of the conventional galloping monitoring systems, such as sensitivity to electromagnetic interference, the need for onsite power, and short lifetimes, a novel optical remote passive measuring system is proposed in the paper. Firstly, to solve the hysteresis and eccentric load problem in tension sensing, and to extent the dynamic response range, an ‘S’ type elastic element structure with flanges was proposed. Then, a tension experiment was carried out to demonstrate the dynamic response characteristics. Moreover, the designed tension sensor was stretched continuously for 30 min to observe its long time stability. Last but not the least, the sensor was mounted on a 70 m conductor model, and the conductor was oscillated at different frequencies to investigate the dynamic performance of the sensor. The experimental results demonstrate the sensor is suitable for the OHTL galloping detection. Compared with the conventional sensors for OHTL monitoring, the system has many advantages, such as easy installation, no flashover risk, distribution monitoring, better bandwidth, improved accuracy and higher reliability.
机译:架空输电线路(OHTL)的舞动可能会导致导体破裂和铁塔坍塌,并且没有有效的方法来进行长距离分布的在线舞动监测。为了克服传统的舞动监测系统的缺点,例如对电磁干扰的敏感性,对现场电源的需求以及寿命短等,本文提出了一种新型的光学远程无源测量系统。首先,为解决张力传感中的磁滞和偏心载荷问题,并扩展动态响应范围,提出了一种带法兰的“ S”型弹性元件结构。然后,进行张力实验以证明动态响应特性。此外,将设计的张力传感器连续拉伸30分钟以观察其长期稳定性。最后但并非最不重要的一点是,将传感器安装在70 m的导体模型上,并以不同的频率振荡导体,以研究传感器的动态性能。实验结果表明该传感器适用于OHTL驰豫检测。与用于OHTL监视的常规传感器相比,该系统具有许多优点,例如易于安装,没有闪络风险,分布监视,更好的带宽,更高的准确性和更高的可靠性。

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