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Health Monitoring System Based on Intra-Body Communication

机译:基于体内通信的健康监测系统

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This paper presents a model of a Body Area Network (BAN) health monitoring system based on Intra-Body Communication. Intra-body Communication (IBC) is a communication technique that uses the human body as a medium for electrical signal communication. One of the visions in the health care industry is to provide autonomous and continuous self and the remote health monitoring system. This can be achieved via BAN, LAN and WAN integration. The BAN technology itself consists of short range data communication modules, sensors, controller and actuators. The information can be transmitted to the LAN and WAN via the RF technology such as Bluetooth, ZigBee and ANT. Although the implementations of RF communication have been successful, there are still limitations in term of power consumption, battery lifetime, interferences and signal attenuations. One of the solutions for Medical Body Area Network (MBANs) to overcome these issues is by using an IBC technique because it can operate at lower frequencies and power consumption compared to the existing techniques. The first objective is to design the IBC's transmitter and receiver modules using the off the shelf components. The specifications of the modules such as frequency, data rate, modulation and demodulation coding system were defined. The individual module were designed and tested separately. The modules was integrated as an IBC system and tested for functionality then was implemented on PCB. Next objective is to model and implement the digital parts of the transmitter and receiver modules on the Altera's FPGA board. The digital blocks were interfaced with the FPGA's on board modules and the discrete components. The signals that have been received from the transmitter were converted into a proper waveform and it can be viewed via external devices such as oscilloscope and Labview. The signals such as heartbeats or pulses can also be displayed on LCD. In conclusion, the IBC project presents medical health monitoring model that operates at the range of 21 MHz frequency and reduce the power consumption for a longer battery lifetime.
机译:本文介绍了基于体内通信的体积网络(禁令)健康监测系统的模型。体内通信(IBC)是一种通信技术,其使用人体作为电信号通信的介质。医疗保健行业的一个愿景是提供自主和持续的自我和远程健康监测系统。这可以通过禁令,LAN和WAN集成来实现。禁令技术本身包括短程数据通信模块,传感器,控制器和执行器。这些信息可以通过蓝牙,ZigBee和Ant等RF技术传输到LAN和WAN。虽然RF通信的实现已经成功,但是在功耗,电池寿命,干扰和信号衰减期间仍有局限性。用于克服这些问题的医疗体区域网络(MBans)的一个解决方案是通过使用IBC技术,因为与现有技术相比,它可以以较低的频率和功耗运行。第一个目标是使用搁板组件设计IBC的发射器和接收器模块。定义了频率,数据速率,调制和解调编码系统等模块的规格。单独设计和测试各个模块。将模块作为IBC系统集成,并对功能进行测试,然后在PCB上实现。下一个目标是在Altera的FPGA板上模拟和实现发射器和接收器模块的数字部分。数字块与FPGA的板模块和离散组件接口。从发送器接收的信号被转换为适当的波形,可以通过外部设备(如示波器和LabVIEW)查看。诸如心跳或脉冲的信号也可以在LCD上显示。总之,IBC项目介绍了医疗健康监测模型,可在21 MHz频率的范围内运行,并降低电池寿命更长的功耗。

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