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使用压电换能器的多载波机载超声传输。

Multicarrier airborne ultrasound transmission with piezoelectric transducers.

作者信息

Ens Alexander, Reindl Leonhard M

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2015 May;62(5):905-14. doi: 10.1109/TUFFC.2014.006803.

Abstract

In decentralized localization systems, the received signal has to be assigned to the sender. Therefore, longrange airborne ultrasound communication enables the transmission of an identifier of the sender within the ultrasound signal to the receiver. Further, in areas with high electromagnetic noise or electromagnetic free areas, ultrasound communication is an alternative. Using code division multiple access (CDMA) to transmit data is ineffective in rooms due to high echo amplitudes. Further, piezoelectric transducers generate a narrow-band ultrasound signal, which limits the data rate. This work shows the use of multiple carrier frequencies in orthogonal frequency division multiplex (OFDM) and differential quadrature phase shift keying modulation with narrowband piezoelectric devices to achieve a packet length of 2.1 ms. Moreover, the adapted channel coding increases data rate by correcting transmission errors. As a result, a 2-carrier ultrasound transmission system on an embedded system achieves a data rate of approximately 5.7 kBaud. Within the presented work, a transmission range up to 18 m with a packet error rate (PER) of 13% at 10-V supply voltage is reported. In addition, the transmission works up to 22 m with a PER of 85%. Moreover, this paper shows the accuracy of the frame synchronization over the distance. Consequently, the system achieves a standard deviation of 14 μs for ranges up to 10 m.

摘要

在分布式定位系统中,接收到的信号必须被分配给发送方。因此,远程机载超声通信能够在超声信号中将发送方的标识符传输给接收方。此外,在电磁噪声高的区域或无电磁区域,超声通信是一种替代方案。由于回波幅度高,在房间内使用码分多址(CDMA)传输数据效率低下。此外,压电换能器会产生窄带超声信号,这限制了数据速率。这项工作展示了在正交频分复用(OFDM)中使用多个载波频率以及与窄带压电器件配合使用差分正交相移键控调制,以实现2.1毫秒的数据包长度。此外,适配的信道编码通过纠正传输错误来提高数据速率。结果,嵌入式系统上的双载波超声传输系统实现了约5.7千波特的数据速率。在本研究中,报告了在10伏电源电压下,传输范围可达18米,误包率(PER)为13%。此外,传输距离可达22米,误包率为85%。此外,本文展示了帧同步在不同距离上的准确性。因此,该系统在距离达10米时的标准差为14微秒。

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