Suppr超能文献

通过磁异常进行室内航点导航。

Indoor waypoint navigation via magnetic anomalies.

作者信息

Riehle Timothy H, Anderson Shane M, Lichter Patrick A, Condon John P, Sheikh Suneel I, Hedin Daniel S

机构信息

Koronis Biomedical Technologies, Inc Maple Grove, MN 55369, USA.

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2011;2011:5315-8. doi: 10.1109/IEMBS.2011.6091315.

Abstract

A wide assortment of technologies have been proposed to construct indoor navigation services for the blind and vision impaired. Proximity-based systems and multilateration systems have been successfully demonstrated and employed. Despite the technical success of these technologies, broad adoption has been limited due to their significant infrastructure and maintenance costs. An alternative approach utilizing the indoor magnetic signatures inherent to steel-frame buildings solves the infrastructure cost problem; in effect the existing building is the location system infrastructure. Although magnetic indoor navigation does not require the installation of dedicated hardware, the dedication of resources to produce precise survey maps of magnetic anomalies represents a further barrier to adoption. In the present work an alternative leader-follower form of waypoint-navigation system has been developed that works without surveyed magnetic maps of a site. Instead the wayfarer's magnetometer readings are compared to a pre-recorded magnetic "leader" trace containing magnetic data collected along a route and annotated with waypoint information. The goal of the navigation system is to correlate the follower's magnetometer data with the leader's to trigger audio cues at precise points along the route, thus providing location-based guidance to the user. The system should also provide early indications of off-route conditions. As part of the research effort a smartphone based application was created to record and annotate leader traces with audio and numeric data at waypoints of interest, and algorithms were developed to determine (1) when the follower reaches a waypoint and (2) when the follower goes off-route. A navigation system utilizing this technology would enable a low-cost indoor navigation system capable of replaying audio annotations at precise locations along pre-recorded routes.

摘要

人们已经提出了各种各样的技术来为盲人和视力障碍者构建室内导航服务。基于接近度的系统和多边定位系统已得到成功演示和应用。尽管这些技术在技术上取得了成功,但由于其高昂的基础设施和维护成本,广泛采用受到了限制。一种利用钢框架建筑固有的室内磁特征的替代方法解决了基础设施成本问题;实际上,现有的建筑就是定位系统基础设施。虽然磁性室内导航不需要安装专用硬件,但投入资源制作精确的磁异常测量地图仍是采用该技术的一个进一步障碍。在当前的工作中,开发了一种替代的航点导航系统的跟随式形式,该系统无需对场地进行磁图测量即可工作。相反,将行人的磁力计读数与预先记录的磁性“引导”轨迹进行比较,该轨迹包含沿路线收集的磁性数据并标注了航点信息。导航系统的目标是将跟随者的磁力计数据与引导者的磁力计数据相关联,以便在路线上的精确点触发音频提示,从而为用户提供基于位置的引导。该系统还应提供偏离路线情况的早期指示。作为研究工作的一部分,创建了一个基于智能手机的应用程序,用于在感兴趣的航点用音频和数字数据记录和标注引导轨迹,并开发了算法来确定(1)跟随者何时到达航点以及(2)跟随者何时偏离路线。利用该技术的导航系统将实现一种低成本的室内导航系统,能够在预先记录的路线上的精确位置重放音频注释。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验