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Design of a Sensor Coil and Measurement Electronics for Magnetic Induction Tomography

机译:磁感应层析成像的传感器线圈和测量电子设备的设计

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Magnetic induction tomography (MIT) is a tomographic imaging technique that is able to map the electromagnetic properties within an object or vessel from magnetic field measurements. Excitation coils are used to induce eddy currents in the medium, and the magnetic field produced by the induced eddy current is then sensed by receiver coils. Because of its noncontact nature, MIT is particularly attractive for biomedical and some industrial applications, such as pipe-flow monitoring, when compared with traditional contact electrode-based electrical impedance tomography. This paper describes the design and performance of an MIT transceiver circuit that can operate from 400 kHz to 12 MHz. The in-phase and quadrature (I/Q) demodulation technique is used to measure the signal perturbation due to the induced conduction eddy currents. The transceiver circuit design employs a single integrated circuit, containing a variable-gain amplifier and an I/Q demodulator. This paper contains characterizations of the transceiver's measurement noise, system stability, and sensitivity for detecting saline solutions and metal plates. A novel balanced coaxial screened coil structure with integrated current sensing was also developed to minimize capacitive coupling between coils and to allow measurement of the current in the driving coils. Experiments were carried out at 3 and 10 MHz using bottles of saline solutions (1%–5% concentration) and metal sheets (aluminum and steel) to verify the sensitivity for conductivity imaging.
机译:磁感应层析成像(MIT)是一种层析成像技术,能够根据磁场测量结果绘制物体或容器内的电磁特性。励磁线圈用于在介质中感应出涡流,然后由接收器线圈感测由感应的涡流产生的磁场。由于其非接触性质,与传统的基于接触电极的电阻抗层析成像技术相比,MIT在生物医学和某些工业应用中尤其有吸引力,例如管道流量监控。本文介绍了可在400 kHz至12 MHz范围内工作的MIT收发器电路的设计和性能。同相和正交(I / Q)解调技术用于测量由于感应的导电涡流而引起的信号扰动。收发器电路设计采用单个集成电路,其中包含可变增益放大器和I / Q解调器。本文包含收发器的测量噪声,系统稳定性以及用于检测盐溶液和金属板的灵敏度的特性。还开发了一种带有集成电流感应的新型平衡同轴屏蔽线圈结构,以最大程度地减少线圈之间的电容耦合并允许测量驱动线圈中的电流。使用盐水溶液(浓度为1%–5%)瓶和金属板(铝和钢)在3 MHz和10 MHz上进行实验,以验证电导率成像的灵敏度。

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