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Designs of deformed eight-way Butler matrix with port reduction for massive array beamforming

机译:大规模阵列波束形成的带端口减少功能的变形八路巴特勒矩阵设计

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摘要

Massive-MIMO technology has been proposed for 5G systems, in which beamforming is one of the essential features. In this work, folding deformation technique is proposed to reduce the size of the Butler matrix (BM) used in array system. Based on the mirror symmetry of the conventional BMs, partial components can be saved. By embedding some switches from the feeding network into the internal BMs, the number of building blocks and input ports is decreased. For demonstration, both 4 x 8 BMs and 2 x 8 BMs deformed from a conventional 8 x 8 BM are designed and implemented in this work. Up to 25% reduction in size is achieved when compared to a conventional 8 x 8 BM. The proposed BMs not only can generate eight orthogonal beams, but also can perform the beam synthesis, showing a great potential for future communication systems.
机译:已经提出了针对5G系统的大规模MIMO技术,其中波束成形是基本特征之一。在这项工作中,提出了折叠变形技术以减小阵列系统中使用的巴特勒矩阵(BM)的大小。基于常规BM的镜像对称性,可以节省部分组件。通过将一些从馈送网络的交换机嵌入到内部BM中,可以减少构建块和输入端口的数量。为了演示,在这项工作中设计并实现了从传统的8 x 8 BM变形而来的4 x 8 BM和2 x 8 BM。与传统的8 x 8 BM相比,尺寸可减少多达25%。提出的BM不仅可以产生八个正交波束,而且可以执行波束合成,为未来的通信系统显示出巨大的潜力。

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