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Wi-PoS: A Low-Cost, Open Source Ultra-Wideband (UWB) Hardware Platform with Long Range Sub-GHz Backbone

机译:Wi-POS:具有长距离子GHz骨架的低成本,开源超宽带(UWB)硬件平台

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摘要

Ultra-wideband (UWB) localization is one of the most promising approaches for indoor localization due to its accurate positioning capabilities, immunity against multipath fading, and excellent resilience against narrowband interference. However, UWB researchers are currently limited by the small amount of feasible open source hardware that is publicly available. We developed a new open source hardware platform, Wi-PoS, for precise UWB localization based on Decawave’s DW1000 UWB transceiver with several unique features: support of both long-range sub-GHz and 2.4 GHz back-end communication between nodes, flexible interfacing with external UWB antennas, and an easy implementation of the MAC layer with the Time-Annotated Instruction Set Computer (TAISC) framework. Both hardware and software are open source and all parameters of the UWB ranging can be adjusted, calibrated, and analyzed. This paper explains the main specifications of the hardware platform, illustrates design decisions, and evaluates the performance of the board in terms of range, accuracy, and energy consumption. The accuracy of the ranging system was below 10 cm in an indoor lab environment at distances up to 5 m, and accuracy smaller than 5 cm was obtained at 50 and 75 m in an outdoor environment. A theoretical model was derived for predicting the path loss and the influence of the most important ground reflection. At the same time, the average energy consumption of the hardware was very low with only 81 mA for a tag node and 63 mA for the active anchor nodes, permitting the system to run for several days on a mobile battery pack and allowing easy and fast deployment on sites without an accessible power supply or backbone network. The UWB hardware platform demonstrated flexibility, easy installation, and low power consumption.
机译:超宽带(UWB)定位是由于其准确的定位能力,对多路径衰落的免疫力,以及对窄带干扰的优异恢复性导致室内定位最有希望的方法之一。但是,UWB研究人员目前受到公开可用的少量可行开路硬件的限制。我们开发了一个新的开源硬件平台,Wi-POS,基于具有几个独特功能的DeCawave的DW1000 UWB收发器的精确UWB定位:支持节点之间的远程子GHz和2.4 GHz后端通信,灵活接口外部UWB天线,以及具有时间注释的指令集计算机(TAISC)框架的MAC层的简单实现。硬件和软件都是开源的,可以调整,校准和分析UWB测距的所有参数。本文解释了硬件平台的主要规格,说明了设计决策,并在范围,准确性和能耗方面评估板的性能。在室内实验室环境下测距系统的精度低于10厘米,在高达5米的距离,在室外环境中在50和75米处获得小于5cm的精度。推导了一种理论模型,用于预测最重要的地面反射的路径损失和影响。同时,硬件的平均能耗非常低,只有81 mA用于标签节点,有效锚点节点63 mA,允许系统在移动电池组上运行几天,允许简单快速在没有可访问的电源或骨干网的站点上部署。 UWB硬件平台展示了灵活性,安装方便,电源低。

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