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Design and Characterization of an MFSK-Based Transmitter/Receiver for Ultrasonic Communication Through Metallic Structures

机译:基于MFSK的通过金属结构进行超声波通信的发射器/接收器的设计和特性

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摘要

Some applications require wireless transmission of information to and from devices located inside metal enclosures, e.g., a closed shipping container in transit. However, traditional radio frequency (RF) communication schemes are not capable of transmitting signals through metal enclosures. As an alternative to RF, an ultrasonic communication system based on multitone frequency-shift keying (MFSK) has been developed and evaluated using the steel corner posts of shipping containers as the communication medium. Empirical studies have been performed on the steel channel. The communication system is configurable and consists of two or more modules. The modules are mounted to the metal posts and utilize an inexpensive ultrasonic transducer to send and receive modulated signals through the metal channel. A module also makes use of an inexpensive digital-signal-processing chip for modulating and demodulating MFSK signals. Two case studies for the shipping container application were evaluated: 1) communicating through one container and 2) communicating between stacked containers. Regarding the second case study, a key discovery was that each of the aggregate steel columns formed by a stack of shipping containers can serve as an ultrasonic communication channel that spans all containers in the stack.
机译:某些应用程序要求与位于金属外壳内的设备(例如运输中的密闭运输集装箱)之间进行无线信息传输。但是,传统的射频(RF)通信方案无法通过金属外壳传输信号。作为RF的替代产品,已经开发出了基于多音频移键控(MFSK)的超声通信系统,并使用运输容器的钢制角柱作为通信介质进行了评估。对钢通道进行了实证研究。该通信系统是可配置的,并且由两个或多个模块组成。这些模块安装在金属柱上,并利用廉价的超声换能器通过金属通道发送和接收调制信号。模块还利用廉价的数字信号处理芯片来调制和解调MFSK信号。评估了针对运输容器应用的两个案例研究:1)通过一个容器进行通信,以及2)在堆叠的容器之间进行通信。关于第二个案例研究,一个关键发现是,由一堆运输集装箱形成的每个骨料钢柱都可以用作跨越整个堆叠中所有集装箱的超声波通信通道。

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