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The space-ground hybrid beamforming technology in satellite communmication system

机译:卫星通信系统中的空地混合波束成形技术

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Traditional space-based beamforming is totally conducted on the satellite, which brings lots of problems to the space signal processing. Ground-based beamforming system transfers the beamforming operation to the ground, but we face the problem of too much down link data and too many channels especially in the case of a lot of antenna array elements. The space-ground hybrid beamforming technology combines the advantages of these two projects. First, we adopt FAPI algorithm to extract the subspace of desired signal and interference signals to realize the compression of the matrix, which effectively decreases the amount of down link data. Then, signals transmit through channels to the ground. We use LCMV iteration algorithm to make signals beamformed. This technology not only lightens the space processing burden, but also reduces the number of channels and saves channel resources. According to the simulation results, space dimension reduction operation has no impacts on the performance of the ground adaptive beamforming, which proves the effectiveness of the algorithm.
机译:传统的空基波束成形完全在卫星上进行,这给空间信号处理带来了很多问题。基于地面的波束成形系统将波束成形操作转移到地面,但是我们面临着太多的下行链路数据和太多的信道的问题,尤其是在天线阵列元件很多的情况下。空地混合波束成形技术结合了这两个项目的优势。首先,我们采用FAPI算法提取期望信号和干扰信号的子空间,以实现矩阵的压缩,从而有效减少了下行数据量。然后,信号通过通道传输到地面。我们使用LCMV迭代算法使信号波束成形。该技术不仅减轻了空间处理的负担,而且减少了信道数量并节省了信道资源。根据仿真结果,空间降维操作对地面自适应波束形成的性能没有影响,证明了该算法的有效性。

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