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Experimental investigation of an optimization approach to microwave tomography

机译:微波层析成像优化方法的实验研究

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摘要

Microwave imaging is an interesting and growing research field with a number of medical applications. This paper is based on the first series of experimental results using an iterative gradient algorithm based on the finite difference time domain (FDTD) method and synthetic pulses. Using our method, the permittivity and conductivity of an object are reconstructed layer by layer by miniminizing a functional consisting of the difference between lite measured and calculated electric field surrounding the object. This is done by surrounding the object with a number of antennas which are all in turn transmitting and receiving. The dielectric profiles used in the calculations are then iteratively updated until the functional is minimized. Results are presented demonstrating the ability to detect metallic and dielectric material in air and water.
机译:微波成像是一个有趣且不断发展的研究领域,具有许多医疗应用。本文基于使用有限差分时域(FDTD)方法和合成脉冲的迭代梯度算法的第一系列实验结果。使用我们的方法,通过最小化包含物体周围的光场和计算电场之间的差异的函数,可以逐层重建物体的介电常数和电导率。这是通过用多个天线围绕对象完成的,这些天线依次进行发送和接收。然后迭代地更新在计算中使用的介电曲线,直到最小化功能。结果表明了检测空气和水中金属和介电材料的能力。

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