Sidelobe Reduction by Subarray Stacking for Uniformly Excited mmW Phased Arrays

M. Javed, N. Tervo, M. Leinonen, A. Pärssinen
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引用次数: 1

Abstract

The performance of multi-user millimeter-wave (mmW) systems is limited by relatively high sidelobe levels (SLLs) of antenna arrays. Per-antenna amplitude control can be used to adjust the amplitudes to reduce the SLL, but the reduction is often achieved at the cost of reduced transmitted power. Large two-dimensional (2D) antenna panels used in mmW phased arrays, however, allow the 2D antenna configuration to be reconfigured to reduce the SLL. In this paper, we present a simplified approach for sidelobe reduction by stacking multiple uniform linear arrays of different size to reduce the sidelobes across the horizontal plane. The approach is based on the relation between the number of antenna elements and the directions of null and sidelobe maxima. The sidelobe reduction is demonstrated by both simulations and measurements. The measurements are carried out in an anechoic chamber at 28 GHz center frequency using a 100 MHz wide modulated 5GNR waveform.
均匀激发毫米波相控阵的子阵叠加旁瓣抑制
多用户毫米波(mmW)系统的性能受到天线阵列相对较高的旁瓣电平(sll)的限制。每个天线的幅度控制可以用来调整幅度来降低SLL,但是这种降低通常是以降低发射功率为代价的。然而,在毫米波相控阵中使用的大型二维(2D)天线面板允许重新配置二维天线配置以减少SLL。本文提出了一种简化的旁瓣抑制方法,通过叠加多个不同大小的均匀线性阵列来减少横向旁瓣。该方法基于天线单元数与零瓣最大值和副瓣最大值方向的关系。仿真和测量结果都证明了旁瓣的抑制效果。测量在28 GHz中心频率的消声室中进行,使用100 MHz宽调制5GNR波形。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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