Beamforming Design for Wireless Coded Caching with Different Cache Sizes

Ayaka Urabe, K. Ishibashi, M. Salehi, Antti Tölli
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Abstract

This paper studies the performance of wireless coded caching over multiple-input and single-output (MISO) channels in a finite signal-to-noise power ratio (SNR) region when every user has a different cache memory size. We first propose multicast beamforming for the network with the conventional coded caching based on quadratic transform (QT) and then point out the non-optimality of the caching scheme when the spatial degree of freedom (DoF) is exploited. We hence formulate a new optimization problem to enhance the caching gain by minimizing the difference between the generated codewords. Numerical results confirm the non-optimality of the conventional coded caching in terms of the average transmission rate and the improvement of our proposed caching.
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不同缓存大小无线编码缓存的波束形成设计
本文研究了在有限信噪比(SNR)区域内,当每个用户的缓存容量不同时,无线编码缓存在多输入单输出(MISO)信道上的性能。首先提出了基于二次变换(QT)的传统编码缓存网络多播波束形成方案,然后指出了利用空间自由度(DoF)时缓存方案的非最优性。因此,我们提出了一个新的优化问题,通过最小化生成码字之间的差异来提高缓存增益。数值结果证实了传统编码缓存在平均传输速率方面的非最优性以及我们所提出的缓存的改进。
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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