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Low-Cost Unattended Design of Miniaturized 4 × 4 Butler Matrices with Nonstandard Phase Differences

机译:具有非标准相位差异的小型化4×4个管家矩阵的低成本无人看管的设计

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摘要

Design of Butler matrices dedicated to Internet of Things and 5th generation (5G) mobile systems—where small size and high performance are of primary concern—is a challenging task that often exceeds capabilities of conventional techniques. Lack of appropriate, unified design approaches is a serious bottleneck for the development of Butler structures for contemporary applications. In this work, a low-cost bottom-up procedure for rigorous and unattended design of miniaturized 4 × 4 Butler matrices is proposed. The presented approach exploits numerical algorithms (governed by a set of suitable objective functions) to control synthesis, implementation, optimization, and fine-tuning of the structure and its individual building blocks. The framework is demonstrated using two miniaturized matrices with nonstandard output-port phase differences. Numerical results indicate that the computational cost of the design process using the presented framework is over 80% lower compared to the conventional approach. The footprints of optimized matrices are only 696 and 767 mm2, respectively. Small size and operation frequency of around 2.6 GHz make the circuits of potential use for mobile devices dedicated to work within a sub-6 GHz 5G spectrum. Both structures have been benchmarked against the state-of-the-art designs from the literature in terms of performance and size. Measurements of the fabricated Butler matrix prototype are also provided.
机译:致力于物联网和第五代(5G)移动系统的巴特勒矩阵的设计 - 其中小尺寸和高性能主要关注 - 是一个具有挑战性的任务,通常超过传统技术的能力。缺乏合适的统一设计方法是对当代应用的管家结构的发展的严重瓶颈。在这项工作中,提出了一种用于小型化4×4个管家矩阵的严格和无人值守设计的低成本自下而上的过程。该方法利用数值算法(由一组合适的客观函数控制)来控制结构及其各个构建块的合成,实施,优化和微调。使用具有非标准输出端口相位差的两个小型化矩阵来证明该框架。数值结果表明,与传统方法相比,使用所呈现的框架的设计过程的计算成本超过了80%以上。优化矩阵的占地面积分别仅为696和767mm2。大尺寸和操作频率约为2.6 GHz,使潜在使用的电路用于专用于在Sub-6 GHz 5G频谱内工作的移动设备。在性能和尺寸方面,这两个结构都针对从文献的最先进的设计基准测试。还提供了制造的管家基质原型的测量。

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