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An Efficient Micro Control Unit with a Reconfigurable Filter Design for Wireless Body Sensor Networks (WBSNs)

机译:具有可重新配置滤波器设计的高效微控制单元用于无线人体传感器网络(WBSN)

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摘要

In this paper, a low-cost, low-power and high performance micro control unit (MCU) core is proposed for wireless body sensor networks (WBSNs). It consists of an asynchronous interface, a register bank, a reconfigurable filter, a slop-feature forecast, a lossless data encoder, an error correct coding (ECC) encoder, a UART interface, a power management (PWM), and a multi-sensor controller. To improve the system performance and expansion abilities, the asynchronous interface is added for handling signal exchanges between different clock domains. To eliminate the noise of various bio-signals, the reconfigurable filter is created to provide the functions of average, binomial and sharpen filters. The slop-feature forecast and the lossless data encoder is proposed to reduce the data of various biomedical signals for transmission. Furthermore, the ECC encoder is added to improve the reliability for the wireless transmission and the UART interface is employed the proposed design to be compatible with wireless devices. For long-term healthcare monitoring application, a power management technique is developed for reducing the power consumption of the WBSN system. In addition, the proposed design can be operated with four different bio-sensors simultaneously. The proposed design was successfully tested with a FPGA verification board. The VLSI architecture of this work contains 7.67-K gate counts and consumes the power of 5.8 mW or 1.9 mW at 100 MHz or 133 MHz processing rate using a TSMC 0.18 μm or 0.13 μm CMOS process. Compared with previous techniques, this design achieves higher performance, more functions, more flexibility and higher compatibility than other micro controller designs.
机译:本文针对无线人体传感器网络(WBSN)提出了一种低成本,低功耗,高性能的微控制单元(MCU)内核。它由一个异步接口,一个寄存器组,一个可重新配置的滤波器,一个斜坡特性预测,一个无损数据编码器,一个纠错编码(ECC)编码器,一个UART接口,一个电源管理(PWM)和一个多路复用器组成。传感器控制器。为了提高系统性能和扩展能力,添加了异步接口以处理不同时钟域之间的信号交换。为了消除各种生物信号的噪声,创建了可重新配置的滤波器,以提供平均,二项式和锐化滤波器的功能。提出了一种坡度特征预测和无损数据编码器,以减少各种生物医学信号的传输数据。此外,添加了ECC编码器以提高无线传输的可靠性,并且采用UART接口来与无线设备兼容。对于长期医疗监控应用,开发了一种电源管理技术以减少WBSN系统的功耗。另外,提出的设计可以同时与四个不同的生物传感器一起运行。拟议的设计已通过FPGA验证板成功测试。这项工作的VLSI架构包含7.67-K的门数,并且使用TSMC 0.18μm或0.13μmCMOS工艺在100 MHz或133 MHz的处理速率下消耗5.8 mW或1.9 mW的功率。与以前的技术相比,该设计比其他微控制器设计具有更高的性能,更多的功能,更大的灵活性和更高的兼容性。

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