高通量卫星系统中相控阵的子集预编码和渐缩

Karin Plimon, A. Mengali, J. Ebert, A. Ginesi, H. Schlemmer
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引用次数: 1

摘要

相控阵波束形成技术在高通量卫星系统设计中得到了广泛应用。与喇叭天线阵列相比,它们显然在空间上提供了更大的灵活性,并提供了减少干扰的可能性,同时仍然致力于地面上的全频率重复使用。通常,这些天线也使用锥形来控制旁瓣电平。在这项工作中,我们应用传统的波束预编码作为地面上的干扰缓解方案,并在前向链路中逐渐变细,并确定通过子集预编码降低计算复杂性的可能选择。在直接辐射阵列和阵列馈电反射器天线上进行性能评估。除了加性高斯白噪声外,还考虑了自适应编码和调制余量以及信道状态信息误差,以创造真实的信道条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Subset Precoding and Tapering on Phased Arrays for High Throughput Satellite Systems
Beamforming with phased arrays gained popularity for the design of new high throughput satellite (HTS) systems. In contrast to horn antenna arrays, they clearly offer more flexibility in space and provide the possibility to reduce interference while still aiming for full frequency re-use on ground. Often, tapering is also used for these antennas to control the side lobe level. In this work, we apply the traditional beam precoding, as interference mitigation scheme on ground along with tapering in the forward link and determine possible options for the reduction of computational complexity by subset precoding. The performance evaluation is executed on a direct radiating array and an array fed reflector antenna. Apart from additive white Gaussian noise, also an adaptive coding and modulation margin and channel state information error are considered to create realistic channel conditions.
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