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Surface electric field distributions of lightweight phantom composed of wave absorber for simplified SAR measurement

机译:吸收体组成的轻质体模的表面电场分布,用于简化SAR测量

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摘要

In recent years, the use of wireless communication devices that are used in close proximity to the human body has been increasing, and there has been growing concern about the effects of human exposure to electromagnetic waves radiated close to the human body. For this reason, a simplified method for measuring the specific absorption rate is required. In this paper, a flat-plane lightweight phantom comprising a radio wave absorber is considered as an alternative to a liquid phantom. The electrical parameters of the lightweight phantom are determined to be such that the amplitude of its surface impedance is identical to that of the surface impedance of the liquid phantom; the parameters are determined by using transmission-line theory. When a finite-difference time-domain (FDTD) method is used to determine the distributions of the electric field, the surface distributions of the electric field on the flat-plane lightweight phantom are found to be identical to those using a liquid phantom. Finally, surface distributions of the electric field using the lightweight phantom are determined from measurements and compared with those obtained using the FDTD method.
机译:近年来,越来越靠近人体使用的无线通信设备的使用不断增加,并且人们日益关注人体暴露于靠近人体辐射的电磁波的影响。因此,需要一种用于测量比吸收率的简化方法。在本文中,包括无线电波吸收器的平面轻质体模被认为是液体体模的替代方案。轻型体模的电参数被确定为使得其表面阻抗的幅度与液体体模的表面阻抗的幅度相同。这些参数是使用传输线理论确定的。当使用时域有限差分(FDTD)方法确定电场分布时,发现平板轻型幻影上电场的表面分布与使用液体幻影的表面相同。最后,通过测量确定使用轻型幻影的电场的表面分布,并将其与使用FDTD方法获得的分布进行比较。

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