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Ultra-High-Frequency Radio-Frequency-Identification Baseband Processor Design for Bio-Signal Acquisition and Wireless Transmission in Healthcare System

机译:超高频无线频率识别基带处理器设计,用于生物信号采集和医疗保健系统中的无线传输

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摘要

Healthcare systems have been an important part of the research on consumer electronics in recent years. To be a mass-market product, a healthcare system is combined with a home control system. In this article, an ultra-high-frequency radio-frequency-identification (UHF RFID) wireless interface is built and implemented for the bio-signal monitoring of the healthcare system. This interface is composed of a digital baseband processor with an application specific integrated circuit (ASIC) for the RFID reader and tag. All functions are implemented to fit the requirement of electronic product code class 1 generation 2 protocol, such as cyclic redundancy check/verify, pulse interval encoding, and bi-phase space coding. The system platform was built to obtain bio-signals, which can demonstrate the hand-shaking stage and communication between the reader and tag at the same time. The tag was fabricated under the 180-nm standard CMOS process with the average power consumption of only 73.62 mu W. The reader was implemented by a field programmable gate array in the system. The power consumption of the entire system combined with those in our previous works, which include analog front-end and radio-frequency front-end, is considered. It achieves 75 mu W, which is lower than those achieved with the existing state-of-the-art wireless interface. Moreover, the wearable device with ASICs is proposed to feature on relative low power and small size. Thus, it is more suitable for consumer electronics.
机译:医疗保健系统近年来一直是消费电子产品研究的重要组成部分。要成为大众市场产品,医疗保健系统与家庭控制系统相结合。在本文中,为医疗保健系统的生物信号监控构建和实现了超高频射频识别(UHF RFID)无线接口。该接口由数字基带处理器组成,具有用于RFID读取器和标签的专用集成电路(ASIC)。实施所有功能以适合电子产品代码1代2的要求,例如循环冗余校验/验证,脉冲间隔编码和双相空间编码。建立系统平台以获取生物信号,可以同时展示读卡器和标签之间的手动阶段和通信。在180nm标准CMOS工艺下,标签制造,平均功耗仅为73.62μW。读者由系统中的现场可编程门阵列实现。考虑了整个系统的功耗与我们以前的作品中的那些包括模拟前端和射频前端的功耗。它实现了75亩W,其低于现有最先进的无线界面实现的那些。此外,提出了具有ASICS的可穿戴设备,以特征在于相对低功率和小尺寸。因此,它更适合消费电子产品。

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