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An audio transmission system based on capacitive coupling intra-body communication

机译:基于电容耦合帧内通信的音频传输系统

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In this paper, we present an audio transmission system based on capacitive coupling intra-body communication (IBC). The system consists of a transmitter and a receiver, which are powered by separate batteries. In the transmitter, Field Programmable Gate Array (FPGA) is used to encode and modulate the digital audio data. The data is converted into analog signal and finally coupled into the human body by the IBC electrode. In the receiver, signal transmitting within human body is detected by the IBC electrode and converted into digital data. An FPGA is used to demodulate, synchronize and decode the data, and finally the data is recovered to the sound signal by audio chip. Our experiments show that the system can continuously transmit data at the rate of 1536 kbps on the human body, which lays a foundation for the application of IBC technology in wireless headphones.
机译:在本文中,我们介绍了一种基于电容耦合帧内通信(IBC)的音频传输系统。 系统由发射器和接收器组成,接收器由单独的电池供电。 在发射器中,现场可编程门阵列(FPGA)用于对数字音频数据进行编码和调制。 将数据转换成模拟信号,并通过IBC电极最后耦合到人体中。 在接收器中,通过IBC电极检测人体内的信号传输并转换成数字数据。 FPGA用于解调,同步和解码数据,最后将数据通过音频芯片恢复到声音信号。 我们的实验表明,该系统可以在人体上以1536 kbps的速度连续传输数据,这为在无线耳机中应用IBC技术的应用基础。

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