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Advances in real-time non-contact monitoring of medical thermal treatment through multistatic array microwave imaging

机译:多静态阵列微波成像技术对医疗热处理的实时非接触监测

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In this paper, we present some recent advances in real-time non-contact monitoring of thermal treatment through multistatic array imaging. The work presented was primarily motivated by the need to improve the flexibility and computational efficiency of the forward modeling of microwave imaging systems in general and of our real-time microwave thermal monitoring system in particular. Specifically, we have developed a conformal finite-difference time domain (CFDTD) solver that addresses several limitations inherent to our previously reported forward modeling methods. In particular, this CFDTD solver has enabled the implementation of a fully integrated numerical vector Green's function that addresses the task of linking the object's scattered field to the measured scattered voltage in a more general and flexible way than the waveport vector Green's function method used in our earlier work. Both the CFDTD solver and the integrated numerical Green's function are validated for a prototype microwave imaging cavity through comparison with CST Microwave Studio. These validated methods are currently being used in an ongoing experimental characterization of microwave imaging for both dielectric reconstruction and real-time thermal monitoring.
机译:在本文中,我们介绍了通过多静态阵列成像对热处理进行实时非接触式监测的一些最新进展。提出的工作主要是由于需要提高总体上微波成像系统的正向建模(尤其是我们的实时微波热监测系统)的灵活性和计算效率。具体来说,我们开发了共形有限差分时域(CFDTD)求解器,该求解器解决了先前报道的正向建模方法固有的一些局限性。特别是,该CFDTD求解器实现了完全集成的数值矢量格林函数的实现,该函数解决了将物体的散射场与测得的散射电压链接起来的任务,这比我们使用的波口矢量格林函数方法更通用,更灵活较早的工作。通过与CST Microwave Studio的比较,对CFDTD求解器和集成的数值格林函数进行了微波原型腔验证。这些经过验证的方法目前正在微波成像的正在进行的实验表征中用于介电重建和实时热监测。

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