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2-D FDTD study of fixed-focus elliptical reflector system for breast cancer detection: frequency window for optimum operation

机译:用于乳腺癌检测的定焦椭圆反射器系统的二维FDTD研究:最佳操作的频率窗口

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We have previously reported investigations of a novel pulsed confocal microwave system for detection of breast tumors (Hagness et al., 1997). In this paper, we extend this work by identifying a frequency window for optimum operation of the tumor detection system. The finite difference time-domain (FDTD) method is used to study a simplified 2-D breast-tissue geometry adjacent to an elliptical reflector antenna. First, power density results are presented to demonstrate the focusing abilities of the reflector antenna for sinusoid excitation at 3, 6 and 9 GHz. Second, a tumor located at the in-breast focus of the antenna is included in the geometry in order to observe the pulse response of the detector as a function of the tumor size at center frequencies of 3, G and 9 GHz.
机译:我们先前已经报道了一种用于检测乳腺肿瘤的新型脉冲共聚焦微波系统的研究(Hagness等,1997)。在本文中,我们通过确定频率窗口以扩展肿瘤检测系统的最佳运行来扩展这项工作。时域有限差分(FDTD)方法用于研究与椭圆形反射器天线相邻的简化的二维乳腺组织几何形状。首先,提出功率密度结果,以证明反射器天线在3 GHz,6 GHz和9 GHz时正弦激励的聚焦能力。其次,在几何结构中包括位于天线最靠内焦点的肿瘤,以便在中心频率3,G和9 GHz下观察检测器的脉冲响应与肿瘤大小的关系。

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