An approach for implementation of ranging and positioning methods on a software defined radio

V. Sark, N. Maletic, J. G. Terán, E. Grass
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引用次数: 3

Abstract

In this paper an approach for implementation of a time of flight ranging methods on a software defined radio (SDR) platform is presented. The proposed approach is intended to be implemented in software running on a host computer without changing the existing hardware of the SDR platform. This approach can be easily extended for use in positioning methods. Using this approach a two way ranging (TWR) method is implemented on a SDR platform. All of the necessary processing is performed using software written in C/C++. This implementation was tested in the 2.4/5 GHz ISM band, with a channel bandwidth of 25 MHz. With this approach a nanosecond precision time of arrival estimation is achieved. This precision is needed in time of flight based ranging and positioning applications. A ranging accuracy better than 1 meter was obtained and demonstrated using the proposed approach. The developed TWR system performs 100 distance estimations per second. Nevertheless, with the processing power of the currently available general purpose processors a distance estimation rate of over 500 estimations per second can be achieved. The proposed approach can be also used in positioning scenarios, by performing TWR with multiple anchor nodes.
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一种在软件定义无线电上实现测距和定位方法的方法
本文提出了一种在软件无线电平台上实现飞行时间测距方法的方法。所提出的方法旨在在不改变SDR平台现有硬件的情况下在主机上运行的软件中实现。这种方法可以很容易地扩展到定位方法中。利用该方法在SDR平台上实现了双向测距(TWR)方法。所有必要的处理都是用C/ c++编写的软件来完成的。该实现在2.4/5 GHz ISM频段进行了测试,信道带宽为25 MHz。该方法可达到纳秒级的到达时间估计精度。在基于飞行时间的测距和定位应用中需要这种精度。利用该方法获得了优于1米的测距精度,并进行了验证。开发的TWR系统每秒进行100次距离估计。然而,利用目前可用的通用处理器的处理能力,可以实现每秒超过500次估计的距离估计率。该方法也可用于定位场景,通过使用多个锚节点执行TWR。
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