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Design and Testing of a Multi-Sensor Pedestrian Location and Navigation Platform

机译:多传感器行人定位与导航平台的设计与测试

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摘要

Navigation and location technologies are continually advancing, allowing ever higher accuracies and operation under ever more challenging conditions. The development of such technologies requires the rapid evaluation of a large number of sensors and related utilization strategies. The integration of Global Navigation Satellite Systems (GNSSs) such as the Global Positioning System (GPS) with accelerometers, gyros, barometers, magnetometers and other sensors is allowing for novel applications, but is hindered by the difficulties to test and compare integrated solutions using multiple sensor sets. In order to achieve compatibility and flexibility in terms of multiple sensors, an advanced adaptable platform is required. This paper describes the design and testing of the NavCube, a multi-sensor navigation, location and timing platform. The system provides a research tool for pedestrian navigation, location and body motion analysis in an unobtrusive form factor that enables in situ data collections with minimal gait and posture impact. Testing and examples of applications of the NavCube are provided.
机译:导航和定位技术不断发展,在具有挑战性的条件下可以提供更高的精度和操作。这种技术的发展需要对大量传感器和相关利用策略的快速评估。诸如全球定位系统(GPS)之类的全球导航卫星系统(GNSS)与加速度计,陀螺仪,气压计,磁力计和其他传感器的集成允许进行新颖的应用,但由于难以测试和比较使用多个传感器的集成解决方案而受到阻碍传感器组。为了实现多个传感器的兼容性和灵活性,需要一个先进的可适应平台。本文介绍了NavCube(多传感器导航,定位和计时平台)的设计和测试。该系统以不显眼的外形为行人导航,位置和身体运动分析提供了一种研究工具,可在不影响步态和姿势的情况下就地收集数据。提供了NavCube的测试和应用示例。

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