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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Low-power, low-rate ultrasonic communications system transmitting axially along a cylindrical pipe using transverse waves
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Low-power, low-rate ultrasonic communications system transmitting axially along a cylindrical pipe using transverse waves

机译:低功率,低速率超声通信系统利用横向波沿圆柱管轴向传输

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Acoustic-electric channels have been used in the recent past to send power and data through thin metallic barriers. Acoustic-electric channels formed along a structure which are highly attenuative and nonreverberant could have potential applications in aerospace, nuclear, and oil industries, among others. This work considers data transmission along the length of a cylindrical pipe both when in air and when filled and immersed in water using shear waves of transverse polarity. To combat the effects of frequency selectivity and to address the available power constraints, a simple modulation scheme using noncoherent demodulation is employed for data transmission: chirp-on-off keying (Chirp-OOK). The wideband nature of the chirp waveform provides resilience against nulls in the channel response while making it possible to implement a simple noncoherent energy detector. Monte Carlo simulation results using measured channel responses suggest that the bit error rate performance of the scheme matches quite closely with the theoretical results. The energy detector performance is independent of the type of the channel used as long as intersymbol-interference is negligible and same received E/N is maintained. A low-power prototype hardware system was implemented using microcontrollers, commercial ICs, and custom circuits. Successful data transmission was achieved across the 4.8 m length of pipe (in air and water) for a data rate of 100 bps using approximately 5 mW of transmit power.
机译:近年来,声电通道已用于通过薄金属屏障传输功率和数据。沿着高度衰减且无混响的结构形成的声电通道可能在航空航天,核工业和石油工业等领域具有潜在的应用。这项工作考虑了在空中以及在使用横向极性的剪切波填充和浸入水中时,沿着圆柱管的长度进行数据传输的情况。为了克服频率选择性的影响并解决可用的功率限制,采用了非相干解调的简单调制方案进行数据传输:线性调频键控调频(Chirp-OOK)。线性调频波形的宽带特性可抵抗信道响应中的零点,同时可以实现简单的非相干能量检测器。使用测量的信道响应的蒙特卡洛模拟结果表明,该方案的误码率性能与理论结果非常接近。能量检测器的性能与所用通道的类型无关,只要符号间的干扰可以忽略不计并且保持相同的接收E / N。使用微控制器,商用IC和定制电路实现了低功耗原型硬件系统。使用大约5 mW的发射功率,可以在4.8 m的管道长度(空气和水中)中以100 bps的数据速率成功完成数据传输。

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