UWB signaling for CR and coherent receivers and localization with weak received signals

Jin Wang, Ruiqing Ye, Huaping Liu, Ru Zhang
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引用次数: 3

Abstract

Pulsed ultrawideband (UWB) signaling is widely used in indoor localization networks, in which data communications often occur concurrently. The receivers in such a network often have different complexity, performance, and energy consumption requirements. The goal of this paper is to design a coded-reference (CR) UWB scheme that enables simultaneous data transmission and high-precision localization while receivers with different performance and complexity requirements can flexibly choose their own operation modes. We start with the Barker codes and construct a set of orthogonal codes for CR signaling; compared with existing schemes, these codes have the desired autocorrelation properties required for high-precision timing extraction when the received signal is weak (transmission over a long distance). We also modify an existing hybrid coherent-transmitted-reference modulation format and apply the orthogonal codes designed so that both coherent and CR receivers can demodulate the same transmitted data while the fine-timing information required for high-precision localization is carried inherently in the transmitted signal. Timing synchronization and error performances of the proposed system are analyzed and simulated.
超宽带信号的CR和相干接收器和定位与弱接收信号
脉冲超宽带(UWB)信令广泛应用于室内定位网络中,在室内定位网络中,数据通信往往是并发的。这种网络中的接收器通常具有不同的复杂性、性能和能耗要求。本文的目标是设计一种编码参考(CR)超宽带方案,实现数据同时传输和高精度定位,同时不同性能和复杂度要求的接收机可以灵活选择自己的工作模式。我们从Barker编码入手,构造了一组CR信号的正交编码;与现有方案相比,这些编码在接收信号较弱(远距离传输)时具有高精度定时提取所需的自相关特性。我们还改进了现有的混合相干-传输-参考调制格式,并采用设计的正交码,使相干和CR接收器可以解调相同的传输数据,同时在传输信号中固有地携带高精度定位所需的精细定时信息。对系统的定时同步性能和误差性能进行了分析和仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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