首页> 外文会议>Proceedings of the the Institute of Navigation 2007 national technical meeting (ION NTM 2007) >Design and Testing of a GPS Based Track Change Detection System Using Geometry Car Data
【24h】

Design and Testing of a GPS Based Track Change Detection System Using Geometry Car Data

机译:基于几何汽车数据的GPS航迹变化检测系统的设计与测试

获取原文
获取原文并翻译 | 示例

摘要

software which can determine whether or not the train is traveling on the assigned (correct) track. The real time inputs are 3 ft RMS raw differential GPS, heading rate, and odometer. Fixed inputs are the track maps, and a switch file. It uses a Bayes decision function which outputs the decision and the confidence. The key to success is that trains can only change tracks at switches and there are usually hundreds of GPS measurements between switches. In addition heading rate with odometer provides an independent measure of change at a switch, many measurements map into a single decision. The design was expedited by “Design and Test” procedures based on 4000 miles of AMTRAK Geometry Car data providing data for the algorithms and for verification. A distance based Kalman Filter is utilized to integrate the system and to synchronize real time measurements with the maps. Virtually every form or reasonableness test available is used to reject suspect measurements, and HDOP is factored into the Bayes Decision function. Evaluation of the data as passed through the decision function indicated that false alarm rates are about a factor of 10 less than that which could be expected from a diligent operator. And one would expect that there would be a miss (switch taken but not detected, and not anticipated by an operator), even temporarily, in about one in 1 million switch intervals.
机译:该软件可以确定火车是否在指定的(正确)轨道上行驶。实时输入是3英尺RMS原始差分GPS,航向和里程表。固定输入是轨迹图和切换文件。它使用贝叶斯决策函数,该函数输出决策和置信度。成功的关键是,火车只能在开关处改变轨道,并且在开关之间通常有数百个GPS测量值。此外,带里程表的航向率可提供独立的开关变化量度,许多测量值映射为一个决策。根据4000英里的AMTRAK几何汽车数据,通过“设计和测试”程序加快了设计速度,该数据为算法和验证提供了数据。基于距离的卡尔曼滤波器可用于集成系统并将实时测量结果与地图同步。几乎所有可用的形式或合理性测试都用于拒绝可疑测量,并且HDOP被纳入贝叶斯决策函数中。对通过决策功能传递的数据进行的评估表明,误报率比勤奋的操作员所期望的误报率低约10倍。并且人们可能会在大约百万分之一的开关间隔中(即使是暂时的)错过一次故障(已采取但未被检测到,并且操作员未预期到)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号