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Development of Online Electromagnetic Tomography Demodulation System for Rail Defect Inspection

机译:用于轨道缺陷检测的在线电磁层析成像解调系统的开发

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Rail inspection is the most important maintenance method for the safety of rail transportation. With the advantages of noncontact inspection, electromagnetic tomography can be an ideal technique to realize online inspection. In this paper, a novel Electromagnetic Tomography rail inspection prototype developed with Field Programmable Gate Array(FPGA) as front circuit control and signal demodulation unit. The rail inspection sensor designed with 12 coils matrix formed as “L” shape to meet the wheel and track running condition. In the sensor matrix four excitation coils are excited by four individual direct digital synthesizer(DDS) implemented by FPGA. Four signals with four optimized frequencies applied simultaneously to excite four tomographic projection. Other coils pairs in the array are acting as detection coils to measure response signals at the same time. This excitation strategy makes the four projection of electromagnetic tomography applied parallel to improve the efficiency of inspection. The measurement coils' output signals demodulated by FPGA in real time and then the demodulation results are transferred to an image reconstruction computer with user diagram protocol(UDP) by Ethernet. Linear Back Projection image reconstruction algorithm used to reconstruct the rail defect to meet the construction speed requirement. Rail inspection experiments show that the prototype is feasible to be used in real time rail inspection.
机译:铁路检查是铁路运输安全最重要的维护方法。利用非接触式检查的优势,电磁层析成像可以成为实现在线检查的理想技术。在本文中,以现场可编程门阵列(FPGA)作为前电路控制和信号解调单元,开发了一种新颖的电磁层析成像轨道检测原型。轨道检查传感器设计成12个线圈矩阵,呈“ L”形,以满足车轮和轨道的行驶条件。在传感器矩阵中,四个励磁线圈由FPGA实现的四个单独的直接数字合成器(DDS)励磁。同时应用具有四个优化频率的四个信号来激发四个层析成像投影。阵列中的其他线圈对充当检测线圈,以同时测量响应信号。这种激励策略使电磁层析成像的四个投影平行应用,以提高检查效率。通过FPGA实时解调测量线圈的输出信号,然后将解调结果通过以太网传输到具有用户图协议(UDP)的图像重建计算机。线性反投影图像重建算法用于重建钢轨缺陷,以满足施工速度要求。轨道检测实验表明该样机可用于实时轨道检测。

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