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A portable monitor system for biology signal based on singlechip

机译:基于单片机的便携式生物信号监控系统

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The objectives of the paper are to improve accuracy of the electrocardiogram and temperature signal, improve the system stability and the capability of dynamic response, and decrease power consumption and volume of the system. The basic method is making use of the inner resource of the singlechip, such as the exact constant-current source, hardware multiplier, ADC, etc. The model of singlechip is MSP430F449 of TI (Texas Instruments). A simple integral-coefficient band-rejection digital filter was designed for analyzing the electrocardiogram signal. The deviation of temperature coming from the degradation of battery voltage was compensated for. An automatic discharge access was designed in the circuit to improve the capability of dynamic response of circuit. The results indicate that the 50 Hz power frequency interfering and the baseline drift are filtered, the figure is clear, the accuracy of temperature is 0.03℃, and the consumption current is less than 1.3mA. The system can meet the requirement in ward monitor and surgery monitor.
机译:本文的目的是提高心电图和温度信号的准确性,提高系统稳定性和动态响应能力,并降低功耗和系统体积。基本方法是利用单片机的内部资源,例如精确的恒流源,硬件乘法器,ADC等。单片机的型号为TI(Texas Instruments)的MSP430F449。设计了一个简单的积分系数带阻数字滤波器来分析心电图信号。补偿了由于电池电压下降引起的温度偏差。在电路中设计了自动放电通道,以提高电路的动态响应能力。结果表明,对50 Hz工频干扰和基线漂移进行了滤波,图形清晰,温度精度为0.03℃,消耗电流小于1.3mA。该系统可以满足病房监护仪和手术监护仪的要求。

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