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首页> 外文期刊>Systems Journal, IEEE >Wireless Body Sensor Network With Adaptive Low-Power Design for Biometrics and Healthcare Applications
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Wireless Body Sensor Network With Adaptive Low-Power Design for Biometrics and Healthcare Applications

机译:具有自适应低功耗设计的无线人体传感器网络,用于生物识别和医疗保健应用

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A four-levels hierarchical wireless body sensor network (WBSN) system is designed for biometrics and healthcare applications. It also separates pathways for communication and control. In order to improve performance, a communication cycle is constructed for synchronizing the WBSN system with the pipeline. A low-power adaptive process is a necessity for long-time healthcare monitoring. It includes a data encoder and an adaptive power conserving algorithm within each sensor node along with an accurate control switch system for adaptive power control. The thermal sensor node consists of a micro control unit (MCU), a thermal bipolar junction transistor sensor, an analog-to-digital converter (ADC), a calibrator, a data encoder, a 2.4-GHz radio frequency transceiver, and an antenna. When detecting ten body temperature or 240 electrocardiogram (ECG) signals per second, the power consumption is either 106.3 $mu {rm W}$ or 220.4 $mu {rm W}$. By switching circuits, multi sharing wireless protocol, and reducing transmission data by data encoder, it achieves a reduction of 99.573% or 99.164% in power consumption compared to those without using adaptive and encoding modules. Compared with published research reports and industrial works, the proposed method is 69.6% or 98% lower than the power consumption in thermal sensor nodes which consist only of a sensor and ADC (without MCU, 2.4-GHz transceiver, modulator, demodulator, and data encoder) or wireless ECG sensor nodes which selected Bluetooth, 2.4-GHz transceiver, and Zigbee as wireless protocols.
机译:专为生物识别和医疗保健应用设计的四级分层无线人体传感器网络(WBSN)系统。它还将通信和控制的路径分开。为了提高性能,构建了通信周期以使WBSN系统与管道同步。对于长期的医疗保健监视,低功耗自适应过程是必需的。它包括每个传感器节点内的数据编码器和自适应功率节省算法,以及用于自适应功率控制的精确控制开关系统。热传感器节点包括一个微控制单元(MCU),一个热双极结型晶体管传感器,一个模数转换器(ADC),一个校准器,一个数据编码器,一个2.4 GHz射频收发器和一个天线。当每秒检测十个体温或240个心电图(ECG)信号时,功耗为106.3 $ mu {rm W} $或220.4 $ mu {rm W} $。与不使用自适应和编码模块的设备相比,通过切换电路,多共享无线协议以及通过数据编码器减少传输数据,可将功耗降低99.573%或99.164%。与已发表的研究报告和工业作品相比,该方法比仅由传感器和ADC(不包括MCU,2.4 GHz收发器,调制器,解调器和数据)组成的热传感器节点的功耗低69.6%或98%。编码器)或选择蓝牙,2.4 GHz收发器和Zigbee作为无线协议的无线ECG传感器节点。

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