二维快速傅里叶变换圆柱扫描天线测量的近场到远场变换

C. Apriono, Nofrizal, Mochamad Dandy Firmansyah, F. Zulkifli, E. Rahardjo
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引用次数: 3

摘要

天线的辐射特性应该通过精确的测量程序来测试。为了提供天线辐射的实际参数,必须在远场区域进行测量,其距离与天线的尺寸成正比。因此,在消声室设施的有限空间中,天线测量对被测天线的最大尺寸有约束。近场测量方法已成为克服这一问题的一种替代方法。然而,为了获得实际的天线辐射参数,必须避免采样、扫描机制、变换计算等附加技术。在本研究中,我们研究圆柱扫描技术来获得采样数据,因为它比球面扫描在机械设置上更简单,并且可以产生完全二维极坐标图的辐射方向图结果。我们的目标是提供低成本和合理性能的近场测量系统。利用二维快速傅立叶变换对近场数据进行处理和分析,得到远场数据。通过一维快速傅立叶变换和数值方法,比较了所提方法的精度和效率。由谐振频率为3.35 GHz的8阵微带天线实验数据生成的近场数据。变换结果表明,一维快速傅里叶变换、二维快速傅里叶变换和数值方法的平均偏差分别为6.83 dB、3.04 dB和3.77 dB。这些结果表明,用二维快速傅里叶变换得到的远场变换与期望的远场之间的差异最小。该方法已证明近场测量和变换可以预测远场辐射特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Near-field to far-field transformation of cylindrical scanning antenna measurement using two dimension fast-fourier transform
Radiation characteristics of an antenna should be tested through a precise measurement procedure. To provide an actual parameter of an antenna radiation, measurement must be performed in the far-field region and its distance is proportional to the antenna's dimension. Therefore, in a limited space of an anechoic chamber facility, antenna measurement has a constraint to a maximum dimension of the antenna under test. Near-field measurement method has been an alternative to overcome this problem. However, additional techniques, such as sampling, scanning mechanism, transformation computation, cannot be avoided to obtain the actual antenna radiation parameters. In this research, we study cylindrical scanning technique to obtain sampling data because it is simpler than the spherical scanning in mechanical setup and can produce radiation pattern results in completely two dimension polar diagrams. Our purpose is to provide low cost and reasonable performance of a near-field measurement system. Two dimension Fast-Fourier Transform is used to process and analyze the near-field data into the far-field data. Other methods, i.e. one dimensional Fast-Fourier transform and numerical method, are also performed to compare the accuracy and efficiency of the proposed method. Near-field data generated from experiment data measured of 8-array micro-strip antenna at resonant frequency 3.35 GHz. Transformation results show that average deviations of one dimension Fast-Fourier Transform, two dimension Fast-Fourier Transform and the numerical method are 6.83 dB, 3.04 dB, and 3.77 dB, respectively. These results show the minimum discrepancies between the transform and the expected far-field obtained by using the two dimensions Fast-Fourier Transform. This method has shown near-field measurement and transformation can predict the far-field radiation characteristics.
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