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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Numerical computation of human interaction with arbitrarilyoriented superquadric loop antennas in personal communications
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Numerical computation of human interaction with arbitrarilyoriented superquadric loop antennas in personal communications

机译:个人通信中人与任意定向超二次环形天线交互作用的数值计算

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摘要

Loop antennas are widely used in many personal communication systems such as radio pagers. This paper presents results from an extensive numerical simulation of the human interaction with loop antennas. The loop antenna with a superquadric curve, which is able to model the circular, ellipse, square, and rectangular loop is used to model the rectangular loop antenna with rounded corners. The magnetic frill source is used to model the antenna feeding structure. A realistically shaped full-scale human-body model (1.7 m) is constructed. The coupled integral equations (CIE) approach, which consists a Pocklington-type integral equation (PIE) for the loop antenna and a volume electric field integral equation (VEFIE) for the body with mutual coupling terms, are developed to numerically study this electromagnetic (EM) coupling problem. The method of moments (MoM) is employed for numerical solution. Numerical results for the antenna located at the chest pocket and waist-belt levels of the human body with arbitrary loop orientations are presented at 280-MHz VHF paging band. The pager's internal rectangular loop antenna with rounded corners is modeled by a superquadric loop antenna. It is found that the real part of the impedance (radiation resistance) increases about five times and, hence, the antenna ohmic-loss radiation efficiency increases from 4% (in free-space) to 33, 17, and 26% for the x-, y-, and z-oriented loops when proximate to the body. The radiation efficiencies, reduced by the body absorption effect, are 13, 40, and 27% for the x-, y-, and z-oriented loops, respectively. For the y-oriented loop, which is found to be the most suitable for radio-paging communications, it has the highest value of Eθ average power gain (product of the directive gain and the ohmic-loss and body-absorption efficiencies) in the horizontal plane. The computed antenna characteristics influenced by the human body, including the input impedance, antenna patterns, cross-polarization field level, radiation efficiencies, and maximum/minimum and average power gains, are very useful for the antenna/RF design and the link budget consideration of the personal communication systems
机译:环形天线广泛用于许多个人通信系统中,例如无线寻呼机。本文介绍了人类与环形天线相互作用的广泛数值模拟的结果。具有超二次曲线的环形天线能够建模圆形,椭圆形,正方形和矩形环形,用于建模具有圆角的矩形环形天线。磁褶边源用于模拟天线馈电结构。构建了逼真的全尺寸人体模型(1.7 m)。开发了耦合积分方程(CIE)方法,该方法包括用于环形天线的Pocklington型积分方程(PIE)和用于具有相互耦合项的物体的体积电场积分方程(VEFIE),以对这种电磁波( EM)耦合问题。矩量法(MoM)用于数值解。在280 MHz VHF寻呼频段上,给出了位于人体的胸袋和腰带水平且具有任意环路方向的天线的数值结果。寻呼机内部带有圆角的矩形环形天线是用超二次环形天线建模的。发现阻抗的实部(辐射电阻)增加了大约五倍,因此,天线的欧姆损耗辐射效率从4%(在自由空间中)增加到x的33%,17%和26%靠近身体时-,y-和z方向的循环。由于人体吸收效应而降低的辐射效率,对于x,y和z方向的环,分别为13%,40%和27%。对于被发现最适合于无线电寻呼通信的y方向环路,它的Eθ平均功率增益(方向增益与欧姆损耗和人体吸收效率的乘积)最高。水平面。计算得出的受人体影响的天线特性,包括输入阻抗,天线方向图,交叉极化场电平,辐射效率以及最大/最小和平均功率增益,对于天线/ RF设计和链路预算考虑非常有用。个人通讯系统

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