首页> 外文期刊>International Journal of Distributed Sensor Networks >Probabilistic Error Modeling and Topology-Based Smoothing of Indoor Localization and Tracking Data, Based on the IEEE 802.15.4a Chirp Spread Spectrum Specification
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Probabilistic Error Modeling and Topology-Based Smoothing of Indoor Localization and Tracking Data, Based on the IEEE 802.15.4a Chirp Spread Spectrum Specification

机译:基于IEEE 802.15.4a Chirp扩频规范的概率误差建模和基于拓扑的室内定位和跟踪数据平滑

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Location awareness is a core capability in many context-aware computing platforms. Multiple existing systems either provide inadequate accuracy or require extensive calibration or preexisting measurements in order to be functional. This work presents an extensive study of indoor tracking based on the chirp spread spectrum (CSS) specification and an associated analytical framework that allows comparisons to be made between different deployments. CSS provides resilience to fading, while being rapidly deployable. Wireless CSS modules are used to provide time of arrival measurements, necessary to infer the coordinates of a mobile user through trilateration. CSS resilience is tested in four deployments: an indoor space where line of sight (LoS) conditions are always satisfied, an indoor site that includes concrete, nonreflective obstructions, an industrial space with metallic, reflective obstacles, and a Tunnel. Empirical data are discussed in conjunction with the geometric dilution of precision (GDoP) metric, which depends on the system’s deployment topology. The probabilistic modeling of the normalized localization error provides insight into the underlying distribution and is utilized in the context of a novel topology-based smoothing technique. Results indicate that CSS can provide accurate tracking. The application of the smoothing algorithm, however, further reduces the normalized error by a considerable amount.
机译:位置感知是许多上下文感知计算平台中的一项核心功能。现有的多个系统要么精度不足,要么需要进行广泛的校准或预先存在的测量才能起作用。这项工作提出了基于线性调频扩频(CSS)规范和相关分析框架的室内跟踪的广泛研究,该框架允许在不同部署之间进行比较。 CSS提供了快速褪色的弹性,同时可以快速部署。无线CSS模块用于提供到达时间测量,这是通过三边测量推断移动用户坐标所必需的。 CSS弹性在以下四个部署中进行了测试:始终满足视线(LoS)条件的室内空间,包含混凝土,非反射性障碍物的室内场所,带有金属,反射性障碍物的工业空间以及隧道。将结合精确度(GDoP)指标的几何稀释度来讨论经验数据,后者取决于系统的部署拓扑。归一化定位误差的概率模型提供了对基础分布的洞察力,并在基于拓扑的新型平滑技术的背景下使用。结果表明CSS可以提供​​准确的跟踪。然而,平滑算法的应用进一步将归一化误差减少了可观的数量。

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