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Investigating inertial measurements using MEMS devices in trainborne automatic track condition monitoring applications

机译:在火车自动跟踪状态监测应用中使用MEMS设备研究惯性测量

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The majority of train-borne automatic track condition monitoring systems in operation throughout the UK rail infrastructure incorporate some form of inertial measurement unit. The rate gyroscopes and accelerometers which make up these units tend to be high value, relatively large and sometimes difficult to acquire. This paper explores the possibility of substituting readily available MEMS sensors into existing systems, initially in order to reduce support costs and improve spares availability. It is imagined that a miniature MEMS based IMU with multiple redundant sensors can be created in the long-term. Inertial measurements in the vertical profile are selected as the basis for a trial between a candidate MEMS device and the standard fitment accelerometer. The specifications of the measurement system are used to determine the minimum performance requirements of the replacement accelerometer. A suitable device is sourced and interfaced with the measurement system by means of a low noise two-stage non-inverting operational amplifier circuit. Trial data is collected from the same four mile section of track, recorded repeatedly at constant speeds between 20mph and 90mph in 10mph intervals, and the data is then analysed graphically and statistically in order to determine the level of agreement between the two sensor types. The trial MEMS accelerometer is proven theoretically to be suitable for use with the current measurement system down to speeds of 25mph. The practical trial suffered from a compromised installation position but still proved that the MEMS accelerometer shows good agreement with the force-balance servo accelerometer, particularly at speeds above 50mph. The data suggests that a further trial with improved installation position would be worth pursuing.
机译:整个英国铁路基础设施中运行的大多数火车自动轨道状态监控系统都集成了某种形式的惯性测量单元。组成这些单位的速率陀螺仪和加速度计往往具有很高的价值,相对较大,有时很难获得。本文探讨了将现有的MEMS传感器替换为现有系统的可能性,最初是为了降低支持成本并提高备件的可用性。可以想象到,可以长期创建带有多个冗余传感器的基于MEMS的微型IMU。选择垂直剖面中的惯性测量值作为候选MEMS设备和标准配件加速度计之间进行试验的基础。测量系统的规格用于确定替代加速度计的最低性能要求。通过低噪声的两级同相运算放大器电路来获取合适的设备并与测量系统连接。从相同的四英里路段收集试验数据,以20mph至90mph的恒定速度以10mph的间隔重复记录,然后对数据进行图形和统计分析,以确定两种传感器类型之间的一致性水平。从理论上证明,试用版MEMS加速度计适用于时速25mph的电流测量系统。实际试验的安装位置受到损害,但仍证明MEMS加速度计与力平衡伺服加速度计显示出良好的一致性,尤其是在速度超过50mph时。数据表明,进行安装位置改善的进一步试验是值得的。

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