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首页> 外文期刊>Selected Areas in Communications, IEEE Journal on >Novel Photonic Analog-to-Digital Converter Architecture for Precise Localization of Ultra-Wide Band Radio Transmitters
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Novel Photonic Analog-to-Digital Converter Architecture for Precise Localization of Ultra-Wide Band Radio Transmitters

机译:用于超宽带无线电发射机精确定位的新型光子模数转换器架构

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摘要

A novel photonic analog-to-digital converter (ADC) architecture tailored for the localization of transmitters employing ultra-wide band (UWB) radio technology is proposed and experimentally demonstrated in this paper. The proposed photonic-ADC architecture comprises several parallel branches each including an electro-optic sensor at different spatial locations capturing UWB signals simultaneously (sub-picosecond resolution). A single optical source is required in this architecture for all electro-optic sensors and also a single processing unit is needed to process the optically sampled data, thus simplifying the system implementation. A five-branch photonic-ADC has been developed for the experimental demonstration. The laboratory measurements demonstrate the successful detection and localization of fully-standard UWB transmitters as in WiMedia specification for very-low power radio signals (-65 dBm received power) captured. A mean three-dimensional positioning error of 48.5 cm with 15 cm standard deviation is achieved.
机译:本文提出了一种新颖的光子模数转换器(ADC)结构,该结构专为采用超宽带(UWB)无线电技术的发射机定位而设计,并在本文中进行了实验验证。所提出的光子ADC结构包括几个并行分支,每个分支包括在不同空间位置同时捕获UWB信号(亚皮秒分辨率)的光电传感器。在此体系结构中,所有电光传感器都需要一个光源,并且还需要一个处理单元来处理光学采样数据,从而简化了系统实现。已经为实验演示开发了五分支光子ADC。实验室测量证明,对于捕获的非常低功率的无线电信号(接收功率为-65 dBm),如WiMedia规范中所述,成功检测和定位了全标准UWB发射机。实现了48.5 cm的平均三维定位误差,标准偏差为15 cm。

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