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Design of FSS Unit-cell for Energy Concentration on Deep-seated Human Tissue

机译:FSS单位细胞的设计,用于深层人体组织的能量浓度

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A unit-cell of Frequency Selective Surface (FSS) which allows for a concentration of the electromagnetic (EM) energy on a deep-seated tissue in the human body is proposed. The proposed FSS unit-cell can change the phase response of the EM wave in a wide phase range, while maintaining the minimum variation of the transmission magnitude within 1 dB. By integrating the unit-cell into the phased-array configuration, the EM energy can be localized into the deep-seated tissue by compensating the phase-delays for different electrical lengths between the FSS-array and the desired target. It leads to the constructive interference of the EM field at the target tissue, so as to deliver strong energy into the human body. The unit-cell consisting of the three-layer metallization is embedded in the water-bolus which provides the optimal condition for the wave-penetration into the complex dielectric media. The FSS unit-cell is analyzed by using the equivalent circuit model and the transmission characteristic of the EM wave passing through the FSS is evaluated on the phantom as an equivalent model for human body. The proposed unit-cell is designed at 915 MHz allocated in Industrial Scientific Medical frequency band.
机译:提出了一种允许在人体中的深层组织上允许电磁(EM)能量浓度的频率选择表面(FSS)的单元单元。所提出的FSS单元单元可以在宽相位范围内改变EM波的相位响应,同时保持1 dB内的传输幅度的最小变化。通过将单元单元集成到相位阵列配置中,可以通过补偿FSS阵列和期望目标之间的不同电长的相位延迟来将EM能量定位到深层组织中。它导致EM场在目标组织处的建设性干扰,从而将强能量传递到人体中。由三层金属化组成的单位单元嵌入在水推注中,该电池为复合电介质介质提供了波渗透的最佳条件。通过使用等效电路模型分析FSS单元单元,并且通过FSS通过FSS的EM波的传输特性作为人体的等同模型。该拟议的单位单元专为在工业科学医学频段分配的915 MHz设计。

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