High-Rate Ultrasonic Link for Data Telemetry to Implantable Biomedical Microsystems Using Pulse Excitation

Keivan Keramatzadeh, A. M. Sodagar
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引用次数: 2

Abstract

This paper reports on the design, simulation, and test of an ultrasonic data telemetry link. A pulse-based data telemetry technique is suggested in this paper, which aims at the suppression of the residual tail of oscillations that naturally follows the response of an ultrasonic transducer to a rectangular pulse. This is made possible by the introduction of a line encoding scheme that suggests the use of an excitatory/inhibitory complex rather than a single excitatory pulse. Efficacy of the technique suggested in this paper was verified through modeling and testing a complete ultrasonic data telemetry link including the transmitting and receiving transducers, as well as the signal conditioning and data recovery blocks on the receiver side. According to the results for transducers with the resonance frequency of 1MHz and saline as the communication channel, a maximum bit rate of 350kbps was achieved.
利用脉冲激励的高速率超声链路用于植入式生物医学微系统的数据遥测
本文报道了一种超声波数据遥测链路的设计、仿真和测试。本文提出了一种基于脉冲的数据遥测技术,其目的是抑制超声波换能器对矩形脉冲的响应所产生的振荡残余。这是通过引入一种线编码方案来实现的,该方案建议使用兴奋/抑制复合物而不是单一的兴奋脉冲。通过对一个完整的超声波数据遥测链路的建模和测试,包括发射和接收换能器,以及接收端的信号调理和数据恢复块,验证了本文提出的技术的有效性。结果表明,共振频率为1MHz,通信通道为盐水的换能器,最大比特率可达350kbps。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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