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首页> 外文期刊>IEEE transactions on biomedical circuits and systems >Enabling Ultrasound In-Body Communication: FIR Channel Models and QAM Experiments
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Enabling Ultrasound In-Body Communication: FIR Channel Models and QAM Experiments

机译:启用超声体内通信:FIR通道模型和QAM实验

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摘要

Ultrasound waves pose a promising alternative to the commonly used electromagnetic waves for intra-body communication. This due to the lower ultrasound wave attenuation, the reduced health risks, and the reduced external interference. Current state-of-the-art ultrasound designs, however, are limited in their practical in-body deployment and reliability. This stems from their use of bulky, focused transducers, the use of simple modulation schemes or the absence of a realistic test environment and corresponding realistic channel models. Therefore, this paper proposes a new, ultrasound, static emulation test bed consisting of small, omnidirectional transducers, and custom gelatin phantoms with additional scattering materials. Using this test bed, we investigate different in-body communication scenarios. Multiple communication channels were extracted and mapped onto finite impulse response (FIR) channel models, which are verified and open sourced for future research. Furthermore, a basic quadrature-amplitude modulation (QAM) modem was built to assess the communication performance under various modulation schemes. A link was established using 4-QAM and 200 kbit/s resulting in a BER <1e-4 at received Eb/No of 13dB. Identical results were obtained by computer simulations on the FIR channels, which makes the extracted FIR channels suitable for the design of future ultrasound in-body communication schemes.
机译:超声波是用于体内通信的常用电磁波的一种有前途的替代方法。这是由于较低的超声波衰减,减少的健康风险和减少的外部干扰。然而,当前最新的超声设计在其实际的体内部署和可靠性方面受到限制。这是由于他们使用笨重的聚焦换能器,使用简单的调制方案或缺少实际的测试环境和相应的实际通道模型而引起的。因此,本文提出了一种新的超声静态仿真试验台,该试验台由小型全向换能器以及带有其他散射材料的定制明胶体模组成。使用该测试台,我们研究了不同的体内交流场景。提取了多个通信通道,并将其映射到有限冲激响应(FIR)通道模型上,这些模型经过验证并为以后的研究提供了开源。此外,建立了一个基本的正交幅度调制(QAM)调制解调器来评估各种调制方案下的通信性能。使用4-QAM和200 kbit / s建立链路,从而在接收到的Eb / No为13dB时BER <1e-4。通过对FIR通道的计算机仿真获得了相同的结果,这使得提取的FIR通道适合于未来的超声体内通信方案的设计。

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