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Track Detection in Railway Sidings Based on MEMS Gyroscope Sensors

机译:基于MEMS陀螺传感器的铁路线路板轨道检测。

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摘要

The paper presents a two-step technique for real-time track detection in single-track railway sidings using low-cost MEMS gyroscopes. The objective is to reliably know the path the train has taken in a switch, diverted or main road, immediately after the train head leaves the switch. The signal delivered by the gyroscope is first processed by an adaptive low-pass filter that rejects noise and converts the temporal turn rate data in degree/second units into spatial turn rate data in degree/meter. The conversion is based on the travelled distance taken from odometer data. The filter is implemented to achieve a speed-dependent cut-off frequency to maximize the signal-to-noise ratio. Although direct comparison of the filtered turn rate signal with a predetermined threshold is possible, the paper shows that better detection performance can be achieved by processing the turn rate signal with a filter matched to the rail switch curvature parameters. Implementation aspects of the track detector have been optimized for real-time operation. The detector has been tested with both simulated data and real data acquired in railway campaigns.
机译:本文提出了一种采用低成本MEMS陀螺仪的单步铁路线路板实时轨道检测的两步技术。目的是在火车头离开开关后立即可靠地知道火车在转向,改道或主路中所经过的路径。陀螺仪传送的信号首先由自适应低通滤波器处理,该滤波器会抑制噪声,并将以度/秒为单位的时间转向率数据转换为以度/米为单位的空间转向率数据。转换基于从里程表数据获取的行进距离。滤波器的实现是为了实现与速度有关的截止频率,以最大程度地提高信噪比。尽管可以将滤波后的转弯速率信号与预定阈值进行直接比较,但本文显示,通过使用与导轨开关曲率参数匹配的滤波器处理转弯速率信号,可以实现更好的检测性能。轨道检测器的实现方面已针对实时操作进行了优化。该探测器已通过模拟数据和铁路战役中采集的真实数据进行了测试。

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