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Optimal device for a low output impedance voltage source for Electrical Impedance Tomography (EIT) systems

机译:用于电阻断层扫描(EIT)系统的低输出阻抗电源的最优装置

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The key component in bio-impedance measurement systems is an excitation source. Electrical Impedance Tomography (EIT) can be performed by injecting current and measuring the resulting voltages, or by applying voltages and measuring the current developed. Interesting characteristics of breast tissues mostly lie above 1MHz; therefore a wideband excitation source covering higher frequencies (i.e. above 1MHz) is required. A viable bandwidth envelope that can be used to design a constant EIT source having low output impedance is the main objective of this research. This paper proposes a voltage controlled voltage source (VCVS) tested by using different nonideal devices. The performance is compared with each other and decision is made which device can be used over a wide bandwidth (100Hz–20MHz) to design an excitation source. This paper also describes the performance of the designed EIT voltage source for different load conditions and load capacitances reporting signal-to-noise ratio, signal phase and output impedance of the source. Preliminary data obtained using Pspice® is used to demonstrate the high-bandwidth performance of the source.
机译:生物阻抗测量系统中的关键组件是激发源。通过注入电流并测量所产生的电压,或通过施加电压和测量电流的电流来执行电阻抗断层扫描(EIT)。乳腺组织的有趣特性大多在1MHz以上;因此,需要覆盖频率较高的宽带激励源(即高于1MHz)。可用于设计具有低输出阻抗的恒定EIT源的可行带宽信封是本研究的主要目标。本文提出了通过使用不同的非膜装置测试的电压控制电压源(VCV)。该性能彼此比较,并进行了哪些设备可以在宽带宽(100Hz-20MHz)上以设计激励源。本文还描述了用于不同负载条件的设计EIT电压源的性能,以及负载电容报告信噪比,信号相位和源的输出阻抗。使用pspice&#x00ae获得的初步数据;用于展示源的高带宽性能。

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