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New methods to reduce leakage errors in planar near-field measurements

机译:减少平面近场测量中泄漏误差的新方法

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摘要

This paper describes two methods to cancel the effect of two kinds of leakage signals which may be presented when an antenna is measured in a planar near-field range. One method tries to reduce leakage bias errors from the receiver¿s quadrature detector and it is based on estimating the bias constant added to every near-field data sample. Then, that constant is subtracted from the data, removing its undesired effect on the far-field pattern. The estimation is performed by back-propagating the field from the scan plane to the antenna under test plane (AUT) and averaging all the data located outside the AUT aperture. The second method is able to cancel the effect of the leakage from faulty transmission lines, connectors or rotary joints. The basis of this method is also a reconstruction process to determine the field distribution on the AUT plane. Once this distribution is known, a spatial filtering is applied to cancel the contribution due to those faulty elements. After that, a near-field-to-far-field transformation is applied, obtaining a new radiation pattern where the leakage effects have disappeared. To verify the effectiveness of both methods, several examples are presented.
机译:本文介绍了两种消除两种泄漏信号影响的方法,当在平面近场范围内测量天线时,可能会出现两种泄漏信号。一种方法试图减少接收机正交检波器的泄漏偏置误差,该方法基于估计添加到每个近场数据样本的偏置常数。然后,从数据中减去该常数,从而消除了其对远场图形的不良影响。通过将场从扫描平面反向传播到测试平面下的天线(AUT),并对位于AUT孔径之外的所有数据求平均,可以进行估算。第二种方法能够消除故障传输线,连接器或旋转接头的泄漏影响。该方法的基础也是确定AUT平面上场分布的重构过程。一旦知道了这种分布,就应用空间滤波以消除由于那些故障元素而造成的影响。之后,应用近场到远场变换,获得泄漏效应消失的新辐射图。为了验证这两种方法的有效性,给出了几个示例。

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