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Investigation of voltage source design's for Electrical Impedance Mammography (EIM) Systems

机译:电气阻抗乳房X线摄影(EIM)系统的电压源设计研究

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According to Jossient, interesting characteristics of breast tissues mostly lie above 1MHz [1]; therefore a wideband excitation source covering higher frequencies (i.e. above 1MHz) is required. The main objective of this research is to establish a feasible bandwidth envelope that can be used to design a constant EIM voltage source over a wide bandwidth with low output impedance for practical implementation. An excitation source is one of the major components in bio-impedance measurement systems. In any bio-impedance measurement system the excitation source can be achieved either by injecting current and measuring the resulting voltages, or by applying voltages and measuring the current developed. This paper describes three voltage source architectures and based on their bandwidth comparison; a differential voltage controlled voltage source (VCVS) is proposed, which can be used over a wide bandwidth (>15MHz). This paper describes the performance of the designed EIM voltage source for different load conditions and load capacitances reporting signal-to-noise ratio of approx 90dB at 10MHz frequency, signal phase and maximum of 4.75kΩ source output impedance at 10MHz. Optimum data obtained using Pspice? is used to demonstrate the highbandwidth performance of the source.
机译:根据jossient,乳腺组织的有趣特性大多高于1MHz [1];因此,需要覆盖频率较高的宽带激励源(即1MHz)。本研究的主要目的是建立可行的带宽信封,可用于在具有低输出阻抗的宽带宽度下设计恒定的EIM电压源,以进行实际实现。激励源是生物阻抗测量系统中的主要组件之一。在任何生物阻抗测量系统中,通过注入电流并测量所产生的电压,或者通过施加电压和测量电流产生的电流来实现激励源。本文介绍了三种电压源架构,并基于它们的带宽比较;提出了一种差分电压控制电压源(VCV),可在宽带宽(> 15MHz)上使用。本文介绍了用于不同负载条件的设计EIM电压源的性能,以及在10MHz频率,信号相位和最大4.75kΩ源输出阻抗处报告相约90dB的信噪比的负载电容。使用pspice获得的最佳数据?用于演示源的高带宽性能。

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