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Passive extended double-sided two-way ranging algorithm for UWB positioning

机译:用于UWB定位的被动扩展双面双向测距算法

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Wireless sensor networks gain ground rapidly due to their potentially low cost. These networks, including variants with UWB (ultra-wideband) physical layer, can be utilized extremely well for positioning because of the technological capabilities. However, the accuracy of localization based on the measurement of time depends on the usage of timestamps provided by certain elements of the network. This article proposes a method to use time of arrival (ToA) also known as time of flight (ToF) measurements in an UWB technology-based passive asynchronous localization strategy (which provides low-power and quick positioning) in combination with extended two-way ranging to improve accuracy named by the authors as PEranging. The proposed method makes the positioning system more resistant to clock drift, while requires fewer messages due to the passive nature of the solution. First, the traditional variants of two-way ranging (TWR) are introduced, contributing the foundation of the proposed strategy, then the so-called PEranging is explained, which is a localization strategy based on indirect distance-measurement.
机译:由于其潜在的低成本,无线传感器网络迅速增益。这些网络包括具有UWB(超宽带)物理层的变体,可以非常好地用于定位,因为技术能力。然而,基于时间测量的定位的准确性取决于由网络的某些元素提供的时间戳的使用。本文提出了一种使用抵达时间(TOA)的方法,也称为UWB技术的无源异步定位策略(提供低功率和快速定位)与扩展双向提供的基于UWB技术的无源异步定位策略(TOF)测量的时间不断提高作者作为盈利命名的准确性。该方法使定位系统更耐时潮流,而由于解决方案的被动性,需要较少的消息。首先,引入了双向范围(TWR)的传统变体,为所提出的策略的基础有贡献,然后解释了所谓的大通,这是基于间接距离测量的本地化策略。

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