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Equi-Spaced-Points-Method (ESPM) for Antenna Radiation Pattern (ARP) Measurements with 3D- Rotation

机译:用于天线辐射图案(ARP)测量的Equi-Space-Potion-Method(ESPM),3D旋转

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The antenna radiation pattern (ARP) is a mathematical function or graphical representation of the radiation properties of the antenna as a function of the spherical coordinates. In the equi-spaced point method (ESPM), the antenna radiated power and maximum directivity are calculated without any complex integration, i.e. the fundamental concept in this paper is that rather than selecting points and then weighting their contributions to the power integral, the measurement points themselves all carry the same weight. The individual points are placed on the sphere in the center of their own equal area segment. This equi space sampling of the antenna radiation pattern results in the equi-spaced antenna radiation pattern (ES-ARP). The ARP analysis is carried out in MATLAB reg V7.3 and Mathematica reg V5.2 for a generalized antenna pattern. The analytical and numerical values of the radiation power and directivity are computed for this pattern both, without rotation and with rotation. After 5pi/16(radians) rotation in 3D, the deviation between the equal angle based numerical value and analytical value of the radiation power and directivity is maximum, i.e. 23.5% for 324 Equi angle samples. Finally by using the ESPM method it was found that the deviation is reduced to 0.004% for 100 Equi spaced samples, independent of rotational position. The ESPM gives more accurate results than the Equi angle based numerical method for reduced number of sampling points, irrespective of 3D rotation.
机译:天线辐射模式(ARP)是天线作为球形坐标的函数的天线的辐射特性的数学函数或图形表示。在Equi-间隔点法(ESPM)中,计算天线辐射功率和最大方向性而无需任何复杂的集成,即本文的基本概念是而不是选择点,然后将它们的贡献加权到功率积分,测量指向自己都带有相同的体重。单个点放置在其自身平等区域段的中心的球体上。该天线辐射图案的该等空间采样导致Equi-间隔的天线辐射图案(ES-ARP)。 ARP分析在Matlab Reg V7.3和Mathematica Reg V5.2中进行,用于广义天线图案。为该图案计算辐射功率和方向性的分析和数值,而不旋转并且旋转。在5PI / 16(弧度)旋转3D之后,基于角度的数值与辐射功率和方向性的分析值之间的偏差是最大的,即324个Equi角度样本的23.5%。最后通过使用ESPM方法,发现偏差降低到100个相平的间隔样品的0.004%,与旋转位置无关。当3D旋转时,ESPM提供比基于正方形的数值方法更精确的结果,而是用于减少采样点的数量。

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