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High Voltage Optical Fibre Sensor for Use in Wire Relay Electrical Protection Systems

机译:电线继电器电气保护系统中使用的高压光纤传感器

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摘要

The last few decades have a wide spread use of optical fibre sensors in many applications. Optical fibre sensors have significant benefits over existing conventional sensors such as; high immunity to electromagnetic interference, the ability to transmit signal over long distance at high bandwidth, high resolution, usage in hazardous environments and no need for isolation when working at high voltages.udThe measurement of high voltages is essential for electrical power systems as it is used as a source of electrical information for Relay Protection Systems (RPS) and load management systems. Electrical Power Systems need to be protected from faults. Faults can range from short circuits, voltage dips, surges, transients etc. The Optical High Voltage sensor developed is based on the principle that the Lead Zirconate Titanate (PZT) electrostriction displacement changes when a voltage is applied to it. The displacement causes the fibre (FBG) which is bonded to the PZT material to have a resultant change in the wavelength.udAn optical fibre sensor prototype has been developed and evaluated that measures up to 250 V DC. Simulation using ANSYS software has been used to demonstrate the operational capability of the sensor up to 300kV AC. This sensor overcomes some of the challenges of conventional sensors issues like electromagnetic interference, signal transmission, resolution etc.udR BASHOUR 2udA novel optical fibre high voltage based on the Kerr effect has been demonstrated. The The Kerr effect was determined using Optsim (R-Soft) software and Maxwell software was used to model an optical Kerr Cell. Maxwell software is an electromagnetic/electric field software used for simulating, analysing, designing 2D and 3D electromagnetic materials and devices. It uses highly accurate Finite Element techniques to solve time varying, static, frequency domain electric and electromagnetic fields. A Relay Protection System on electrical networks was discussed in detail.udKeywords: Fibre Bragg Grating, Fibre Optics Sensors, Piezoelectricity, Kerr effect, Relay Protection Systems.
机译:最近几十年来,光纤传感器在许多应用中得到了广泛的应用。光纤传感器比现有的常规传感器具有明显的优势,例如:高抗电磁干扰性,能够在高带宽,高分辨率下长距离传输信号,在危险环境中使用,并且在高压下工作时无需隔离。 ud高压测量对于电力系统至关重要,因为它用作继电保护系统(RPS)和负载管理系统的电气信息源。电力系统需要保护免受故障。故障的范围包括短路,电压骤降,电涌,瞬变等。开发的光学高压传感器基于以下原理:当施加电压时,锆钛酸铅(PZT)电致伸缩位移会发生变化。位移使粘合到PZT材料上的光纤(FBG)的波长发生改变。 ud已开发并评估了可测量高达250 V DC的光纤传感器原型。已经使用ANSYS软件进行了仿真,以演示高达300kV AC的传感器的运行能力。该传感器克服了常规传感器问题的一些挑战,例如电磁干扰,信号传输,分辨率等。 udR BASHOUR 2 ud已经证明了基于Kerr效应的新型光纤高压。使用Optsim(R-Soft)软件确定Kerr效应,并使用Maxwell软件对光学Kerr Cell进行建模。 Maxwell软件是电磁/电场软件,用于模拟,分析,设计2D和3D电磁材料和设备。它使用高精度的有限元技术解决时变,静态,频域电场和电磁场。关键字:光纤布拉格光栅,光纤传感器,压电,克尔效应,继电保护系统。

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    Bashour Rami;

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  • 年度 2016
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