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Evaluation of Wireless Communication for Maintenance of Underground Power Transmission Lines

机译:无线通信评估维护地下电力传输线

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In the smart grid environment, power sources using unstable renewable energy, such as wind and solar power, connected to the transmission and distribution lines may make the power facilities severe status. Properly grasp of the state of power facilities using ICT is required in order to realize efficient maintenance work, and beside to detect abnormal signs of them automatically. In this paper, applicability of wireless communication system to the maintenance work of underground power transmission lines, that is usually carried out inside of a manhole, is discussed. In order to realize data transmission from inside to outside of a manhole without any additional construction work around a manhole, the use of a wireless communication technology is essential. Since a radio signal may not propagate sufficiently due to a metallic lid laid on the top of a manhole, radio propagation characteristics of 920 MHz band using LoRa were evaluated through the experimental study using a real manhole equipment. Furthermore, for a simple design of a wireless communication system between inside and outside of a manhole, applicability of a computer simulation method of the radio propagation, that is finite difference time domain (FDTD), is shown through a comparison between measured and simulated results.
机译:在智能电网环境中,使用不稳定的可再生能源的电源,例如风和太阳能,连接到传输线和分配线可以使电力设施严重状态。需要适当地掌握使用ICT的电力设施状态,以实现有效的维护工作,并在自动检测它们的异常迹象。本文讨论了无线通信系统对地下电力传输线的维护工作的适用性,通常在孔内部进行。为了实现从人孔的内部的数据传输而没有任何额外的施工工作,无线通信技术是必不可少的。由于无线电信号由于铺设在人孔顶部的金属盖而不充分地传播,因此通过使用真正的人孔设备通过实验研究评估使用Lora的920MHz带的无线电传播特性。此外,在Manhole内部和外部的无线通信系统的简单设计中,通过测量和模拟结果之间的比较示出了有限差分时间域(FDTD)的无线电传播的计算机仿真方法的适用性。

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