Scheduling UWB Ranging and Backbone Communications in a Pure Wireless Indoor Positioning System

Maximilien Charlier, R. Koutsiamanis, B. Quoitin
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引用次数: 1

Abstract

In this paper, we present and evaluate an ultra-wideband (UWB) indoor processing architecture that allows the performing of simultaneous localizations of mobile tags. This architecture relies on a network of low-power fixed anchors that provide forward-ranging measurements to a localization engine responsible for performing trilateration. The communications within this network are orchestrated by UWB-TSCH, an adaptation to the ultra-wideband (UWB) wireless technology of the time-slotted channel-hopping (TSCH) mode of IEEE 802.15.4. As a result of global synchronization, the architecture allows deterministic channel access and low power consumption. Moreover, it makes it possible to communicate concurrently over multiple frequency channels or using orthogonal preamble codes. To schedule communications in such a network, we designed a dedicated centralized scheduler inspired from the traffic aware scheduling algorithm (TASA). By organizing the anchors in multiple cells, the scheduler is able to perform simultaneous localizations and transmissions as long as the corresponding anchors are sufficiently far away to not interfere with each other. In our indoor positioning system (IPS), this is combined with dynamic registration of mobile tags to anchors, easing mobility, as no rescheduling is required. This approach makes our ultra-wideband (UWB) indoor positioning system (IPS) more scalable and reduces deployment costs since it does not require separate networks to perform ranging measurements and to forward them to the localization engine. We further improved our scheduling algorithm with support for multiple sinks and in-network data aggregation. We show, through simulations over large networks containing hundreds of cells, that high positioning rates can be achieved. Notably, we were able to fully schedule a 400-cell/400-tag network in less than 11 s in the worst case, and to create compact schedules which were up to 11 times shorter than otherwise with the use of aggregation, while also bounding queue sizes on anchors to support realistic use situations.
纯无线室内定位系统中UWB测距和主干网通信调度
在本文中,我们提出并评估了一种超宽带(UWB)室内处理架构,该架构允许执行移动标签的同时定位。该架构依赖于低功耗固定锚的网络,为负责执行三边测量的定位引擎提供前向测量。该网络内的通信由UWB-TSCH编排,UWB-TSCH是对IEEE 802.15.4的时隙信道跳频(TSCH)模式的超宽带(UWB)无线技术的适应。由于全局同步,该架构允许确定的通道访问和低功耗。此外,它使通过多个频率信道或使用正交前导码并发通信成为可能。为了在这样的网络中调度通信,我们设计了一个专用的集中式调度程序,灵感来自流量感知调度算法(TASA)。通过在多个单元中组织锚点,调度程序能够同时执行定位和传输,只要相应的锚点距离足够远,不会相互干扰。在我们的室内定位系统(IPS)中,这与移动标签到锚的动态注册相结合,简化了移动性,因为不需要重新安排。这种方法使我们的超宽带(UWB)室内定位系统(IPS)更具可扩展性,并降低了部署成本,因为它不需要单独的网络来执行测距测量并将其转发给定位引擎。我们进一步改进了调度算法,支持多汇聚和网络内数据聚合。我们通过对包含数百个单元的大型网络的模拟表明,可以实现高定位率。值得注意的是,在最坏的情况下,我们能够在不到11秒的时间内完全调度一个400个单元/400个标签的网络,并且创建紧凑的调度,比使用聚合缩短了11倍,同时还在锚上限定队列大小以支持实际使用情况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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