In this paper, we focus our attention on the mitigation of beam squint for reconfigurable intelligent surface (RIS) aided wideband millimeter wave (mmWave) communications. Due to the intrinsic passive property, the phase shifts of all elements in RIS should be the same for all frequencies. However, in the wideband scenario, beam squint induced distinct path phases require designing different phase shifts for different frequencies. The above irreconcilable contradiction will dramatically affect the system performance, considering the RIS usually consists of enormous elements and the bandwidth of wideband mmWave communications may be up to several GHz. Therefore, we propose some novel phase shift design schemes for mitigating the effect of beam squint for both line-of-sight (LoS) and non-Los (NLoS) scenarios. Specifically, for the LoS scenario, we firstly derive the optimal phase shift for each frequency and obtain the common phase shift by maximizing the upper bound of achievable rate. Then, for the NLoS scenario, a mean channel covariance matrix (MCCM) based scheme is proposed by fully exploiting the correlations between both the paths and the subcarriers. Our extensive numerical experiments confirm the effectiveness of the proposed phase shift design schemes.
翻译:在本文中,我们关注的焦点是减缓用于可重新配置智能表面(RIS)辅助宽频度波(mmWave)通信的梁光亮。由于内在的被动属性,RIS中所有元素的相移阶段对所有频率都是一样的。然而,在宽频情景中,光光光光诱导的不同路径阶段需要为不同频率设计不同的阶段转移。上述不可调和的矛盾将极大地影响系统性能,因为RIS通常由巨大的元素组成,宽带宽毫米瓦通信带宽可能达到几个GHz。因此,我们提出一些新型的阶段转变设计计划,以缓解光线视(LOS)和非Los(NLOS)两种情景的光光光光光光光光光亮效果。在宽频情景中,我们首先为每个频率设计最佳的相移阶段,然后通过最大限度地限制可实现率的上限,实现共同阶段的转移。然后,在NLOS假设中,通过充分利用我们所拟议的数字级设计阶段和亚级设计方案之间的广泛互换计划,提出一个平均的频道变差矩阵矩阵模型(MCCM)计划。