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Commercial Vehicle Global Positioning System Based Telematics Data Characteristics and Limitations

机译:商业车辆全球定位系统的远程信息处理数据特征和局限性

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The use of the United States’ Global Positioning System (GPS) to assist with the management of large commercial fleets using telematics is becoming commonplace. Telematics generally refers to the use of wireless devices to transmit data in real time back to an organization. When tied to the GPS system telematics can be used to track fleet vehicle movements, and other parameters. GPS tracking can assist in developing more efficient and safe operations by refining and streamlining routing and operations. GPS based fleet telematics data is also useful for reducing unnecessary engine idle times and minimizing fuel consumption. Driver performance and policy adherence can be monitored, for example by transmitting data regarding seatbelt usage when there is vehicle movement. Despite the advantages for fleet management, there are limitations in the logged data for position and speed that may affect the utility of the system for analysis and reconstruction of traffic collisions. The U.S. Air Force is responsible for maintaining and operating the GPS space and control segments and publishes information about these limitations. The most significant of these limitations do not have serious effects on the use of this data for daily fleet operations, but may have effects and limitations for use in accident reconstruction. These limitations are specific to the accuracy of the position data, the reported vehicle speed, and changes in vehicle speed during acceleration maneuvers. User segment GPS telematics data generated during typical vehicle dynamic maneuvers of medium-duty commercial delivery vans was studied and their accuracy analyzed and discussed. Testing of various maneuvers was conducted at a western U.S. location and an eastern U.S. location. The telematics data validity and reliability was assessed by comparison to data gathered using the GPS based Racelogic VBOX III data acquisition system with a corrected signal, via a GPS Base Station, for baseline reference. The findings present the calculated accuracies for speed and position data.
机译:使用美国的全球定位系统(GPS)来协助使用远程学生管理大型商业舰队正在变得普遍。远程信息处理通常是指使用无线设备将数据实时传输回到组织。当与GPS系统相关联时,远程信息处理可用于跟踪车队车辆运动和其他参数。 GPS跟踪可以通过精炼和精简路由和操作来帮助开发更高效和安全的操作。基于GPS的舰队远程信息处理数据对于减少不必要的发动机空闲时间并最小化燃料消耗也很有用。例如,当存在车辆运动时,可以通过传输关于安全带使用的数据来监视驾驶员性能和策略遵守。尽管舰队管理的优势,但是有限制的位置和速度的局限性可能影响系统的实用性进行分析和重建交通碰撞。美国空军负责维护和操作GPS空间和控制段,并发布有关这些限制的信息。这些限制中最重要的是对日常舰队运营使用此数据的严重影响,但可能对事故重建使用的影响和限制。这些限制是特定于位置数据的准确性,报告的车辆速度和在加速运动期间车辆速度的变化。研究了在典型的车辆动态机动期间生成的中班商用货车的典型车辆动态机动,分析和讨论了典型车辆动态机动。各种机动的测试是在西部地点和东方地区的东部地点进行的。通过通过GPS基站使用GPS基站,通过GPS基站进行基准引用来评估远程信息处理数据有效性和可靠性。该发现介绍了速度和位置数据的计算精度。

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