This paper focuses on studying orthogonal and non-orthogonal multiple access in intelligent reflecting surface (IRS)-aided systems. Unlike most prior works assuming continuous phase shifts, we employ the practical setup where only a finite number of discrete phase shifts are available. To maximize the sum rate, active beamforming and discrete reflection need to be jointly optimized. We therefore propose an alternative optimization method to get the optimal continuous phase shifts iteratively, and then quantize each phase shift to its nearest discrete value. The sum-rate maximization of different schemes is theoretically analyzed and numerically evaluated with different numbers of phase-control bits.
翻译:本文侧重于研究智能反射表面辅助系统(IRS)的正反向和非正反向多重访问。 与大多数先前假设连续阶段转移的工程不同, 我们使用实际设置, 只有有限数量的离散阶段转移是可用的。 要最大化总率, 需要共同优化主动波束和离散反射。 因此, 我们建议了另一种优化优化方法, 以迭接方式实现最佳连续阶段转移, 然后将每阶段转移量量化到最近的离散值。 不同方案的总和率最大化在理论上进行了分析, 并用不同数量的相控位位数进行数字评估 。</s>