首页> 外文会议>Canadian Conference on Electrical and Computer Engineering >THE DESIGNING OF AN INDOOR ACOUSTIC RANGING SYSTEM USING THE AUDIBLE SPREAD SPECTRUM LFM (CHIRP) SIGNAL
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THE DESIGNING OF AN INDOOR ACOUSTIC RANGING SYSTEM USING THE AUDIBLE SPREAD SPECTRUM LFM (CHIRP) SIGNAL

机译:使用可听扩频LFM(CHIRP)信号的室内声学测距系统的设计

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This paper presents an audible spread spectrum (SS) acoustic ranging system for indoor applications. RF synchronization along with using wideband audible signal results in significant reduction in error and reduces the cost and complexity of the ranging hardware and removes the need for high sampling rates. The SS signal, which in this case, is a linear frequency modulated (LFM) pulse (chirp), emanates from a speaker and is received by a microphone. It is then correlated with a delayed copy of the same signal through a matched filter. Important issues of acoustic propagation, along with the impact of indoor reverberation on time of arrival (TOA) estimation are taken into account to use an appropriate LFM pulse. It is found that, an LFM pulse with 3 kHz bandwidth, center frequency of 2 kHz, and chirp rate of 60 Hz/ms would have good performance in range accuracy.
机译:本文介绍了用于室内应用的可听扩频(SS)声学测距系统。 RF同步以及使用宽带可听信号导致误差显着降低,并降低了测距硬件的成本和复杂性,并消除了高采样率的需求。在这种情况下,SS信号是线性频率调制(LFM)脉冲(啁啾),来自扬声器的散发物,并由麦克风接收。然后通过匹配的滤波器与相同信号的延迟拷贝相关联。声学传播的重要问题,随着室内混响对到达时间(TOA)估计的影响,以使用适当的LFM脉冲。结果发现,具有3 kHz带宽,中心频率为2kHz的LFM脉冲,以及60Hz / MS的啁啾率将具有良好的性能。

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