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Design of a 900/1800 MHz dual-band loop antenna mounted on a handset considering the human hand and head effects

机译:考虑到人的手和头的影响,在手机上安装900/1800 MHz双频环形天线的设计

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This paper presents FDTD design analysis of a dual-band loop wire antenna for a 900/1800 MHz mobile handset with consideration of the human hand and head effects. The loop wire antenna, with a small gap of a 1 FDTD-cell size (2.5 mm) is mounted on a metallic box covered by a plastic coating. The human head is modeled as a multilayered superquadric ellipsoid. This model can cover the cases of a sphere, ellipsoid, square cube, or rectangular cube, which facilitate the modeling of the head-shape and tissue properties. The superquadric ellipsoidal head model (with ears) comprises 9 different tissues of skin, cartilage, fat, muscle, bone, blood, nerve, brain, and eye-lens. Considering the proximity between the handset held by hand and the ear of a head, a y-oriented loop wire antenna is positioned at a distance of 1.25 cm. FDTD computation and experimental measurement of the antenna VSWR (mounted on a metallic box with a plastic coating) in free space and held by a hand close to a head is performed. The radiation characteristics of the loop antenna affected by the head and the SAR (specific absorption rate) distribution are important for antenna design and RF exposure studies.
机译:本文介绍了考虑人的手和头部影响的,用于900/1800 MHz手机的双频带环形天线的FDTD设计分析。带有1个FDTD单元尺寸(2.5毫米)的小间隙的环形线天线安装在一个用塑料涂层覆盖的金属盒上。人的头部被建模为多层超二阶椭圆体。该模型可以涵盖球形,椭圆形,方形或矩形立方体的情况,这有助于对头部形状和组织特性进行建模。超二阶椭圆形头部模型(有耳)包括9种不同的皮肤,软骨,脂肪,肌肉,骨骼,血液,神经,脑和眼睛组织。考虑到手持手机与头部耳朵之间的距离,y形环形天线的位置为1.25 cm。对自由空间中的VSWR天线(安装在带有塑料涂层的金属盒上)并用一只手靠近头部的FDTD进行了计算和实验测量。受磁头和SAR(比吸收率)分布影响的环形天线的辐射特性对于天线设计和RF暴露研究很重要。

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