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Programmable Metasurface-Based Multicast Systems: Design and Analysis

机译:基于可编程的MEDasurface的多播系统:设计和分析

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摘要

This paper considers a multi-antenna multicast system with programmable metasurface (PMS) based transmitter. Taking into account of the finite-resolution phase shifts of PMSs, a novel beam training approach is proposed, which achieves comparable performance as the exhaustive beam searching method but with much lower time overhead. Then, a closed-form expression for the achievable multicast rate is presented, which is valid for arbitrary system configurations. In addition, for certain asymptotic scenario, simple approximated expressions for the multicase rate are derived. Closed-form solutions are obtained for the optimal power allocation scheme, and it is shown that equal power allocation is optimal when the pilot power or the number of reflecting elements is sufficiently large. However, it is desirable to allocate more power to weaker users when there are a large number of RF chains. The analytical findings indicate that, with large pilot power, the multicast rate is determined by the weakest user. Also, increasing the number of radio frequency (RF) chains or reflecting elements can significantly improve the multicast rate, and as the phase shift number becomes larger, the multicast rate improves first and gradually converges to a limit. Moreover, increasing the number of users would significantly degrade the multicast rate, but this rate loss can be compensated by implementing a large number of reflecting elements.
机译:本文考虑了具有可编程元曲面(PMS)的发射机的多天线组播系统。考虑到PMSS的有限分辨率相移,提出了一种新的梁训练方法,该方法实现了与穷举梁搜索方法相当的性能,但是具有较低的时间开销。然后,提出了可实现的多播速率的闭合形式表达式,这对于任意系统配置有效。另外,对于某些渐近情景,导出了用于多种速率的简单近似表达式。获得最佳功率分配方案的闭合溶液,并且示出了当导频电源或反射元件的数量足够大时相等功率分配是最佳的。然而,当有大量RF链时,希望将更多的电力分配给较弱的用户。分析结果表明,具有大的导频电源,多播速率由最弱的用户确定。而且,增加射频(RF)链或反射元件的数量可以显着提高组播速率,并且随着相移数变大,多播速率首先改善并逐渐收敛到极限。此外,增加用户数量会显着降低多播速率,但是可以通过实现大量反射元件来补偿该速率损失。

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