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A Power Supply Technology for a Low-Power Online Monitoring Sensor Based on Electric Field Induction

机译:基于电场感应的低功耗在线监测传感器供电技术

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摘要

In order to provide a safe and stable power supply for low-power online monitoring sensors of transmission lines, a method of harvesting space electric field energy by using the impedance conversion characteristics of the transformer and the reactive compensation characteristics of the capacitor is proposed. The method effectively solves the key problem that the power of energy harvesting based on electric field induction is limited by the transformer excitation reactance and is difficult to upgrade. In this paper, the principle of power supply technology based on electric field induction is described in detail, and the influencing factors such as the wire erection mode, polar plate installation position, and capacitance compensation characteristics are simulated and tested. The test results show that when the power supply voltage is 50 kV, the stray capacitance is 14 pF, the compensation capacitance is 0.86 nF, and the load resistance is 1 kΩ, the energy-harvesting power is 340 mW. Finally, the power supply circuit of a drive-away-birds apparatus is designed, which shows that it can provide a stable and reliable power supply for online monitoring sensors.
机译:为了给输电线路低功率在线监测传感器提供安全稳定的电源,提出了一种利用变压器的阻抗转换特性和电容器的无功补偿特性来收集空间电场能量的方法。该方法有效地解决了关键问题,即基于电场感应的能量采集功率受到变压器励磁电抗的限制,难以升级。本文详细介绍了基于电场感应的电源技术原理,并模拟和测试了影响其影响的因素,如导线的安装方式,极板的安装位置和电容补偿特性。测试结果表明,当电源电压为50 kV,杂散电容为14 pF,补偿电容为0.86 nF,负载电阻为1kΩ时,能量收集功率为340 mW。最后,设计了飞鸟装置的电源电路,表明可以为在线监测传感器提供稳定可靠的电源。

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