IEEE Trans Biomed Circuits Syst. 2018 Jun;12(3):461-470. doi: 10.1109/TBCAS.2018.2829512.
Wireless all-analog biosensor design for the concurrent microfluidic and physiological signal monitoring is presented in this paper. The key component is an all-analog circuit capable of compressing two analog sources into one analog signal by the analog joint source-channel coding (AJSCC). Two circuit designs are discussed, including the stacked-voltage-controlled voltage source (VCVS) design with the fixed number of levels, and an improved design, which supports a flexible number of AJSCC levels. Experimental results are presented on the wireless biosensor prototype, composed of printed circuit board realizations of the stacked-VCVS design. Furthermore, circuit simulation and wireless link simulation results are presented on the improved design. Results indicate that the proposed wireless biosensor is well suited for sensing two biological signals simultaneously with high accuracy, and can be applied to a wide variety of low-power and low-cost wireless continuous health monitoring applications.
本文提出了一种用于同时微流控和生理信号监测的无线全模拟生物传感器设计。关键组件是一个全模拟电路,通过模拟联合信源信道编码 (AJSCC) 能够将两个模拟源压缩为一个模拟信号。讨论了两种电路设计,包括具有固定电平数的堆叠电压控制电压源 (VCVS) 设计和支持灵活电平数的改进设计。实验结果是在由堆叠-VCVS 设计的印刷电路板实现组成的无线生物传感器原型上获得的。此外,还对改进设计进行了电路仿真和无线链路仿真。结果表明,所提出的无线生物传感器非常适合以高精度同时感测两个生物信号,并且可以应用于各种低功率和低成本的无线连续健康监测应用。