基于行波技术的相控阵天线定标角度选择和虚拟内间距方法

Zou Yongqing, Cao Jun, G. Ling
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引用次数: 2

摘要

为了使有源相控阵天线达到低旁瓣水平,通过测试和标定,天线孔径的相位和幅值分布必须满足设计要求。目前有许多方法可用于孔径振幅和相位误差的测试和校准。本文验证了基于行波技术的相控阵天线定标角度选择关系sin/spl theta//sub k/=(/spl lambda/[2k-(L+1)])/2Ld。我们发现,如果角度满足这个关系,则变换矩阵的秩是完备的,变换矩阵的条件数等于1,从而实现了高精度的标定。在此基础上,我们开发了用于宽带相控阵天线标定的BIT行波标定技术,并将其命名为“虚拟内间距法”,避免了一维宽带相控阵天线的误差|sin/spl θ //sub k/|>1。此外,BIT行波技术可以很容易地广泛应用于二维相控阵天线和非均匀阵天线。应用“虚拟内间距法”研制了一维和二维相控天线,取得了满意的效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Angle selection and dummy internal spacing methods for phased array antenna calibration based on traveling wave technology
In order to achieve low sidelobe level for an active phased array antenna, the phase and amplitude distribution of antenna aperture must satisfy design requirements by means of test and calibration. Many methods are presently available for test and calibration of aperture amplitude and phase errors. In this paper, the angle selection relationship sin/spl theta//sub k/=(/spl lambda/[2k-(L+1)])/2Ld for phased array antenna calibration based on traveling wave technology is proven. We find that if the angle meets the relationship, then the rank of transform matrix is complete and the condition number of transform matrix equals 1, thus, the high precision calibration is achieved. On such a basis, we developed the BIT traveling wave calibration technology for wideband phased array antenna calibration, and named it "dummy internal spacing method", |sin/spl theta//sub k/|>1 mistake in 1-D broadband phased array antenna is avoided. Also, the BIT traveling wave technology can be widely applied to 2-D phased array antenna and non-uniform array antenna easily. By application of the "dummy internal spacing method", we developed 1-D and 2-D phased antennas, and obtained satisfactory results.
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