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On the selection of protocol and parameters for UWB-based wireless indoors localization

机译:基于UWB的无线室内定位协议和参数的选择

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In this paper we address selection of a protocol and of the respective parameters and communication mode for UWB-based active wireless indoor localization of machines and humans in, e.g., homes, hospitals. etc. First we discuss the specifics of targeted scenario and provide an insight to the operation of an IEEE 802.15.4-compatible UWB localization system, using Decawave's DW1000 UWB transceiver as a reference. Then we discuss the sources of errors for UWB localization, present two state-of-the art (SotA) and propose one new localization protocol intended specifically for asymmetric scenario, and analyze the performance of all three protocols in respect to the clock drift. Finally, we discuss the implementation and present the results obtained in the real-life experiments. The obtained results illustrate the effect of various parameters on the accuracy of localization and confirm that the proposed protocol is less affected by variation of the protocol and communication parameters than the SotA ones, but is subject to have slightly higher deviation of the distance estimation than the symmetric ranging protocol.
机译:在本文中,我们针对例如家庭,医院中基于机器和人的基于UWB的主动无线室内室内定位解决方案的协议以及各个参数和通信模式的选择。首先,我们讨论目标场景的细节,并以Decawave的DW1000 UWB收发器为参考,深入了解IEEE 802.15.4兼容的UWB本地化系统的操作。然后,我们讨论了UWB定位错误的来源,提出了两种最新技术(SotA),并提出了一种专门用于非对称场景的新定位协议,并针对时钟漂移分析了这三种协议的性能。最后,我们讨论了实现方法并介绍了在实际实验中获得的结果。所获得的结果说明了各种参数对定位精度的影响,并证实了所提出的协议受协议和通信参数变化的影响小于SotA协议,但距离估计的偏差要比SotA稍高。对称测距协议。

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