Yin Ming, Ghovanloo Maysam
NC Bionics Laboratory, Department of Electrical and Computer Engineering, North Carolina State University, Raleigh, NC 27695, USA.
IEEE Trans Neural Syst Rehabil Eng. 2009 Aug;17(4):354-63. doi: 10.1109/TNSRE.2009.2023302. Epub 2009 Jun 2.
We have used a well-known technique in wireless communication, pulse width modulation (PWM) of time division multiplexed (TDM) signals, within the architecture of a novel wireless integrated neural recording (WINeR) system. We have evaluated the performance of the PWM-based architecture and indicated its accuracy and potential sources of error through detailed theoretical analysis, simulations, and measurements on a setup consisting of a 15-channel WINeR prototype as the transmitter and two types of receivers; an Agilent 89600 vector signal analyzer and a custom wideband receiver, with 36 and 75 MHz of maximum bandwidth, respectively. Furthermore, we present simulation results from a realistic MATLAB-Simulink model of the entire WINeR system to observe the system behavior in response to changes in various parameters. We have concluded that the 15-ch WINeR prototype, which is fabricated in a 0.5- mum standard CMOS process and consumes 4.5 mW from +/-1.5 V supplies, can acquire and wirelessly transmit up to 320 k-samples/s to a 75-MHz receiver with 8.4 bits of resolution, which is equivalent to a wireless data rate of approximately 2.56 Mb/s.
我们在一种新型无线集成神经记录(WINeR)系统的架构中,采用了无线通信领域一种广为人知的技术,即时分复用(TDM)信号的脉宽调制(PWM)。我们评估了基于PWM的架构的性能,并通过详细的理论分析、仿真以及在一个由15通道WINeR原型作为发射器和两种类型接收器组成的装置上进行测量,指出了其准确性和潜在的误差源;这两种接收器分别是安捷伦89600矢量信号分析仪和一个定制的宽带接收器,其最大带宽分别为36 MHz和75 MHz。此外,我们展示了整个WINeR系统逼真的MATLAB - Simulink模型的仿真结果,以观察系统在各种参数变化时的行为。我们得出结论,采用0.5微米标准CMOS工艺制造、从±1.5 V电源消耗4.5 mW功率的15通道WINeR原型,能够以8.4位分辨率向75 MHz接收器采集并无线传输高达320 k样本/秒的数据,这相当于约2.56 Mb/s的无线数据速率。