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ELECTRICAL IMPEDANCE MEASUREMENT DEVICE AND METHOD FOR PORTABLE ELECTRICAL IMPEDANCE IMAGING SYSTEM

机译:便携式电阻抗成像系统的电阻抗测量装置和方法

摘要

An electrical impedance measurement device and method for a portable electrical impedance imaging system adopt a "current excitation and voltage measurement" principle. An excitation signal is a square wave current signal with constant strength. A response voltage signal on an imaging target passes through circuits such as a buffer amplification circuit, a resistor-capacitor direct current-blocking circuit, and a differential amplification circuit sequentially and is processed into a square signal with suitable amplitude, which is converted into a digital signal by an analog to digital converter at a suitable point of time. The ADC performs data sampling on a measured voltage signal at a high level and a low level of a square wave cycle, to obtain sampling results V1 and V2, and the difference between the V1 and V2 is used as a voltage measurement result in this cycle. The average of voltage measurement results in a plurality of cycles is used as a final voltage measurement result. Due to the constant strength of the excitation current signal, the voltage measurement result can reflect electrical impedance information of the imaging target.
机译:用于便携式电阻抗成像系统的电阻抗测量装置和方法采用“电流激励和电压测量”原理。激励信号是具有恒定强度的方波电流信号。成像目标上的响应电压信号依次通过诸如缓冲放大电路,电阻器-电容器直流分流电路和差分放大电路之类的电路,并被处理为具有适当幅度的方波信号,然后将其转换为模数转换器在适当的时间点生成数字信号。 ADC在方波周期的高电平和低电平上对测得的电压信号进行数据采样,以获得采样结果V1和V2,V1和V2之间的差用作该周期中的电压测量结果。将多个周期中的电压测量结果的平均值用作最终电压测量结果。由于励磁电流信号的强度恒定,因此电压测量结果可以反映成像目标的电阻抗信息。

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