Zhao Lou, Zhang Yuliang, Zhang Minjie, Liu Chunshan
School of Communication Engineering, Hangzhou Dianzi University, Hangzhou 310018, China.
Entropy (Basel). 2024 Mar 13;26(3):253. doi: 10.3390/e26030253.
Millimeter-wave (mmWave) communication systems leverage the directional beamforming capabilities of antenna arrays equipped at the base stations (BS) to counteract the inherent high propagation path loss characteristic of mmWave channels. In downlink mmWave transmissions, i.e., from the BS to users, distinguishing users within the same beam direction poses a significant challenge. Additionally, digital baseband precoding techniques are limited in their ability to mitigate inter-user interference within identical beam directions, representing a fundamental constraint in mmWave downlink transmissions. This study introduces an innovative analog beamforming-based interference mitigation strategy for downlink transmissions in reconfigurable intelligent surface (RIS)-assisted hybrid analog-digital (HAD) mmWave systems. This is achieved through the joint design of analog beamformers and the corresponding coefficients at both the RIS and the BS. We first present derived closed-form approximation expressions for the achievable rate performance in the proposed scenario and establish a stringent upper bound on this performance in a large number of RIS elements regimes. The exclusive use of analog beamforming in the downlink phase allows our proposed transmission algorithm to function efficiently when equipped with low-resolution analog-to-digital/digital-to-analog converters (A/Ds) at the BS. The energy efficiency of the downlink transmission is evaluated through the deployment of six-bit A/Ds and six-bit pulse-amplitude modulation (PAM) signals across varying numbers of activated RIS elements. Numerical simulation results validate the effectiveness of our proposed algorithms in comparison to various benchmark schemes.
毫米波(mmWave)通信系统利用基站(BS)配备的天线阵列的定向波束赋形能力,来抵消毫米波信道固有的高传播路径损耗特性。在下行链路毫米波传输中,即从基站到用户,区分同一波束方向内的用户构成了一项重大挑战。此外,数字基带预编码技术在减轻相同波束方向内用户间干扰的能力方面存在局限,这是毫米波下行链路传输中的一个基本限制。本研究针对可重构智能表面(RIS)辅助的混合模拟 - 数字(HAD)毫米波系统中的下行链路传输,引入了一种基于模拟波束赋形的创新干扰减轻策略。这是通过在RIS和基站处联合设计模拟波束形成器及相应系数来实现的。我们首先给出了所提场景下可实现速率性能的闭式近似表达式,并在大量RIS元件情况下建立了该性能的严格上界。下行链路阶段仅使用模拟波束赋形,使得我们提出的传输算法在基站配备低分辨率模数/数模转换器(A/D)时能够高效运行。通过在不同数量的激活RIS元件上部署6位A/D和6位脉冲幅度调制(PAM)信号,评估了下行链路传输的能量效率。数值模拟结果验证了我们提出的算法与各种基准方案相比的有效性。