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Opto-Acoustic Distance Measurement Using Spread Spectrum Techniques and Carrier Phase Measurements

机译:光谱技术和载波相位测量的光声距离测量

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In this contribution, a novel opto-acoustic indoor navigation system for linear distance measurement is presented. The novelty consists in the simultaneous use of envelope timeof-flight (ETF) and carrier phase (CPH) measurements. In particular, we establish a two-channel link consisting of an ultrasound and infrared channel, the latter using a carrier frequency equal to the ultrasound frequency. In order to render the system extendible for multiple transmitters and receivers, code-division-multiple-access using Gold codes is employed, as all ultrasound and infrared signals share the same carrier frequency. This is also beneficial for multipath scattering suppression. The time difference between the carrier phase of the received ultrasound and infrared signals offers a high resolution but ambiguous distance signal. On the other hand, correlation of the received signals yields a coarse but unique distance signal. Experimental results show that a measurement resolution in the submillimeter range is feasible.
机译:在该贡献中,提出了一种用于线距测量的新型光声室内导航系统。新颖性在于同时使用包络时间 - 飞行(ETF)和载体相(CPH)测量。特别地,我们建立了由超声波和红外信道组成的双通道链路,后者使用载波频率等于超声频率。为了使系统可扩展为多个发射器和接收器,采用使用金代码的码分多次访问,因为所有超声波和红外信号都共享相同的载波频率。这对于多径散射抑制也是有益的。接收的超声波和红外信号的载波阶段之间的时间差提供了高分辨率但模糊的距离信号。另一方面,接收信号的相关性产生粗略但独特的距离信号。实验结果表明,淹没倍数钟范围内的测量分辨率是可行的。

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