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Software Defined Ultrasonic System for Communication Through Solid Structures

机译:通过软件定义的超声系统,用于通过实体结构进行通信

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RF signals are commonly used as a carrier signal in wireless communications. In some situations, like underwater, underground, closed containers or even intra-body, ultrasonic signal is a better carrier signal because RF signal attenuate very fast in these types of channels. Therefore, it is our objective is to assess the capability of using ultrasonic waves as a carrier waveform for communications. Ultrasonic signal is a type of waveform which has a frequency higher than 20 kHz. In this study, a ZYNQ System-on-Chip (SoC) platform is used to conduct ultrasonic communication experiments. This system consists of a transmitting transducer and a receiving transducer operating at MHz range frequencies. The transceiver unit operates using In-phase and Quadrature (IQ) modulation. With IQ modulation, different modulation schemes such as quadrature amplitude modulation (QAM), phase shift keying (PSK) can be readily implemented on the platform without modifying the hardware setup. Experiments are conducted in solid channels with various shape, material and size to explore the ultrasonic communication feasibility in diverse environments. Performance of different modulation methods are discussed and compared in this paper.
机译:RF信号通常在无线通信中用作载波信号。在某些情况下,例如水下,地下,密闭容器甚至是体内,超声波信号是更好的载波信号,因为射频信号在这些类型的通道中衰减非常快。因此,我们的目标是评估使用超声波作为通信载波的能力。超声波信号是一种频率高于20 kHz的波形。在这项研究中,使用ZYNQ片上系统(SoC)平台进行超声通信实验。该系统由在MHz范围频率下工作的发射换能器和接收换能器组成。收发器单元使用同相和正交(IQ)调制进行操作。使用IQ调制,可以在平台上轻松实现不同的调制方案,例如正交幅度调制(QAM),相移键控(PSK),而无需修改硬件设置。在具有各种形状,材料和尺寸的固体通道中进行实验,以探索在各种环境中进行超声通信的可行性。本文讨论并比较了不同调制方法的性能。

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