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High-rate ultrasonic communication through metallic barriers using MIMO-OFDM techniques

机译:使用MIMO-OFDM技术的金属屏障高速超声通信

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This paper presents methods to achieve high data transmission rates through metallic barriers using ultrasonic signalling techniques. Due to the frequency selective nature of acoustic-electric channels, orthogonal frequency division multiplexing (OFDM) is employed which achieves high spectral efficiency. Multiple parallel channels are used to further increase data rates. Multiple-input multiple-output (MIMO) techniques are used to reduce crosstalk that would otherwise greatly limit performance and achievable data rates. Several crosstalk mitigation techniques are investigated and their theoretical capacity performances are determined for the general case of A transmitters and A receivers (i.e. A×A MIMO). A physical MIMO acoustic-electric channel array is formed using a 40 mm (1.575 in) thick steel barrier with seven pairs of 4 MHz nominal resonant frequency piezoelectric disk transducers, each with 10 mm (0.394 in) diameter. To investigate the effects of crosstalk, the transducers are closely spaced, and each transmitter-receiver pair is coaxially aligned on opposing sides of the metallic barrier. It is shown that, with the use of crosstalk mitigation techniques, the aggregate multichannel capacity performance scales linearly with the number of channels used and approaches 700 Mbps at high average signal-to-noise ratio (SNR) levels. Finally, the use of bit-loading techniques are explored using several levels of rectangular quadrature amplitude modulation (QAM), and the achievable data rates are compared with each other and to the multichannel theoretical capacity performances.
机译:本文介绍了通过使用超声信号技术通过金属屏障实现高数据传输速率的方法。由于声学电信道的频率选择性,采用正交频分复用(OFDM),其实现了高光谱效率。多个并行频道用于进一步提高数据速率。多输入多输出(MIMO)技术用于减少串扰,否则会极大地限制性能和可实现的数据速率。研究了几种串扰缓解技术,并且确定了它们的变送器和接收器的一般情况(即A× MIMO)确定其理论能力性能。使用40mm(1.575英寸)厚的钢屏幕形成物理MIMO声学电动通道阵列,具有七对4 MHz标称谐振频率压电盘换能器,每个钢筋换能器,直径为10毫米(0.394英寸)。为了研究串扰的效果,换能器紧密间隔,并且每个发射器接收器对在金属屏障的相对侧上同轴对齐。结果表明,通过使用串扰缓解技术,聚合多通道容量性能与使用的通道数量线性缩放,并且在高平均信噪比(SNR)水平下接近700 Mbps。最后,利用多个矩形正交幅度调制(QAM)探索使用比特加载技术,并且可以彼此进行比较和多通道理论容量性能的可实现的数据速率。

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