The effects of a nearby biological body on the parameters of a small hand-held radio operating in the H.F. band (3MHz-30MHz)

R. M. Cooper, R. Radcliff
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引用次数: 2

Abstract

The effects of a nearby biological body on the efficiency and radiation patterns of a small hand-held radio operating in the H.F. band are determined by computer modeling. The close proximity of the radio operator's body results in the scattered field from the body reradiating and perturbing the known free-space current distribution in the antennas to some extent. However, due to the extremely small electrical size of the radiating system, this body-to-radio coupling is assumed to be minimal and henceforth neglected. Thus, a direct moment method is used to solve a volumetric electric field integral equation with the near field of the radio as the excitation field. Once the equivalent volumetric currents are determined, the efficiency and radiation patterns are found using these currents and the unperturbed free space current of the radio antenna.
附近生物对高频波段(3MHz-30MHz)小型手持无线电参数的影响
附近的生物对小型手持无线电在高频波段工作的效率和辐射模式的影响是通过计算机模拟确定的。无线电操作员身体的近距离会导致来自身体的散射场辐射,并在一定程度上干扰天线中已知的自由空间电流分布。然而,由于辐射系统的电气尺寸非常小,这种体-无线电耦合被认为是最小的,因此被忽略。因此,采用直接矩法求解了以射电机近场为激励场的体积电场积分方程。一旦确定了等效体积电流,利用这些电流和无线电天线的无扰动自由空间电流,就可以找到效率和辐射模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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