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A wireless electrocardiogram detection for personal health monitoring

机译:用于个人健康监控的无线心电图检测

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The current paper presents low-power analog integrated circuits (ICs) for wireless electrocardiogram (ECG) detection in personal health monitoring. Considering the power-efficient communication in the body sensor network (BSN), the required low-power analog ICs are developed for a healthcare system through miniaturization and system integration. The proposed system comprises the design and implementation with three subsystems, namely, (1) the ECG acquisition node, (2) the protocol for standard IEEE 802.15.4 ZigBee system, and (3) the radio frequency (RF) transmitter circuits. A preamplifier, a low-pass filter, and a successive-approximation analog-to-digital converter (SA-ADC) are integrated to detect an ECG signal. For high integration, the ZigBee protocol is adopted for wireless communication. To transmit the ECG signal through wireless communication, a quadrature voltage-controlled oscillator and a 2.4 GHz low-IF transmitter with a power amplifier and up-conversion mixer are also developed. In the receiver, a 2.4 GHz fully integrated CMOS radio-frequency front-end with a low-noise amplifier, and a quadrature mixer is proposed. The low-power wireless bio-signal acquisition SoC (WBSA-SoC) has been implemented in TSMC 0.18-µm standard CMOS process. The measurement results on the human body reveal that the ECG signals can be acquired effectively by the proposed SoC.
机译:当前的论文提出了用于个人健康监测中的无线心电图(ECG)检测的低功耗模拟集成电路(IC)。考虑到人体传感器网络(BSN)中的节能通信,通过小型化和系统集成为医疗系统开发了所需的低功耗模拟IC。所提出的系统包括具有三个子系统的设计和实现,三个子系统分别是(1)ECG采集节点,(2)用于标准IEEE 802.15.4 ZigBee系统的协议和(3)射频(RF)发射机电路。集成了前置放大器,低通滤波器和逐次逼近模数转换器(SA-ADC)以检测ECG信号。为了高度集成,采用ZigBee协议进行无线通信。为了通过无线通信传输ECG信号,还开发了一个正交压控振荡器和一个带有功率放大器和上变频混频器的2.4 GHz低中频发射机。在接收器中,提出了具有低噪声放大器的2.4 GHz完全集成CMOS射频前端和正交混频器。低功耗无线生物信号采集SoC(WBSA-SoC)已采用TSMC 0.18 µm标准CMOS工艺实现。对人体的测量结果表明,所建议的SoC可以有效地获取ECG信号。

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