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Fresnel-field range design: array element pattern considerations

机译:菲涅耳场范围设计:阵列元素图案注意事项

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Real-time antenna pattern measurements are usually performed using either a far-field range or compact range. Alternative measurement techniques have been proposed in order to reduce the measurement distance without using an optical device (i.e., reflector or lens) required for compact range implementation. Generally, this is accomplished by using an array to synthesize a uniform plane wave at near-field distances. Recently, an alternative plane wave synthesis method which employs a ring array geometry similar to that of Hald has been proposed. In this technique (McKay and Rahmat-Samii, 1993), a uniformly excited ring array is employed to compensate for the phase taper associated with a concentric radiator. Compensation is achieved using Fresnel zone approximations in conjunction with a graphical design approach carried out in the complex plane. The method results in simple design formulas and provides insight into fundamental limitations on the extent of the plane wave which can be generated. Several range design issues related to array element pattern effects are examined in this paper.
机译:实时天线方向图测量通常使用远场范围或紧凑范围进行。为了减小测量距离而不使用紧凑范围实现所需的光学设备(即反射器或透镜),已经提出了替代的测量技术。通常,这是通过使用阵列在近场距离处合成均匀的平面波来实现的。最近,已经提出了一种替代的平面波合成方法,该方法采用类似于Hald的环形阵列几何形状。在这种技术中(McKay和Rahmat-Samii,1993),采用了均匀激发环阵列来补偿与同心辐射体相关的相位锥度。使用菲涅耳区近似值和在复杂平面中执行的图形设计方法可实现补偿。该方法产生简单的设计公式,并提供对可生成平面波范围的基本限制的见解。本文研究了与阵列元素图案效应相关的几个范围设计问题。

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