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An Asynchronous Multi-Sensor Micro Control Unit for Wireless Body Sensor Networks (WBSNs)

机译:无线人体传感器网络(WBSN)的异步多传感器微控制单元

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摘要

In this work, an asynchronous multi-sensor micro control unit (MCU) core is proposed for wireless body sensor networks (WBSNs). It consists of asynchronous interfaces, a power management unit, a multi-sensor controller, a data encoder (DE), and an error correct coder (ECC). To improve the system performance and expansion abilities, the asynchronous interface is created for handshaking different clock domains between ADC and RF with MCU. To increase the use time of the WBSN system, a power management technique is developed for reducing power consumption. In addition, the multi-sensor controller is designed for detecting various biomedical signals. To prevent loss error from wireless transmission, use of an error correct coding technique is important in biomedical applications. The data encoder is added for lossless compression of various biomedical signals with a compression ratio of almost three. This design is successfully tested on a FPGA board. The VLSI architecture of this work contains 2.68-K gate counts and consumes power 496-μW at 133-MHz processing rate by using TSMC 0.13-μm CMOS process. Compared with the previous techniques, this work offers higher performance, more functions, and lower hardware cost than other micro controller designs.
机译:在这项工作中,提出了一种用于无线人体传感器网络(WBSN)的异步多传感器微控制单元(MCU)内核。它由异步接口,电源管理单元,多传感器控制器,数据编码器(DE)和纠错编码器(ECC)组成。为了提高系统性能和扩展能力,创建了异步接口以在ADC和带有MCU的RF之间握手不同的时钟域。为了增加WBSN系统的使用时间,开发了用于减少功耗的功率管理技术。此外,多传感器控制器设计用于检测各种生物医学信号。为了防止无线传输造成的丢失错误,在生物医学应用中使用纠错编码技术非常重要。添加了数据编码器,以几乎三倍的压缩比无损压缩各种生物医学信号。此设计已在FPGA板上成功测试。这项工作的VLSI架构包含2.68-K的门数,并且使用TSMC0.13-μmCMOS工艺以133-MHz的处理速率消耗496-W的功率。与以前的技术相比,这项工作提供了比其他微控制器设计更高的性能,更多的功能以及更低的硬件成本。

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