论文标题

IRS辅助EMB-FURLLC系统的基于代码书的两次规模资源分配设计

Codebook Based Two-Time Scale Resource Allocation Design for IRS-Assisted eMBB-URLLC Systems

论文作者

Ghanem, Walid R., Jamali, Vahid, Schellmann, Malte, Cao, Hanwen, Eichinger, Joseph, Schober, Robert

论文摘要

本文研究了由大型智能反射表面(IRS)辅助的无线系统的资源分配算法设计,并存增强的移动宽带(EMBB)和超可靠的低延迟通信(URLLC)用户。我们考虑了两次规模的资源分配方案,从而在每个迷你插槽中优化了基站的预码器以适应新到达的URLLC流量,而IRS相位偏移仅在每个时间段中重新配置,以避免过多的基本站IIR信号。为了促进大型IRS的有效资源分配设计,我们采用了基于代码的优化框架,其中IRS被分为几个图块,每个图块的相移元素都从预定义的代码簿中选择。资源分配算法设计是作为优化问题提出的,以最大化一个时间段的EMBB用户的平均总和数据率,同时保证每个迷你插槽中每个URLLC用户的服务质量(QoS)。提出了基于交替优化(AO)的迭代算法以找到高质量的次优溶液。作为案例研究,提出的算法应用于通过Quadriga通道模拟器建模的工业室内环境中。我们的仿真结果表明,与三个基线方案相比,所提出的算法设计使EMBB和URLLC用户的共存并获得了较大的性能增长。此外,我们的仿真结果表明,与在每个迷你插槽中优化IRS相比,提出的两次尺度资源分配设计仅会导致较小的性能损失。

This paper investigates the resource allocation algorithm design for wireless systems assisted by large intelligent reflecting surfaces (IRSs) with coexisting enhanced mobile broadband (eMBB) and ultra reliable low-latency communication (URLLC) users. We consider a two-time scale resource allocation scheme, whereby the base station's precoders are optimized in each mini-slot to adapt to newly arriving URLLC traffic, whereas the IRS phase shifts are reconfigured only in each time slot to avoid excessive base station-IRS signaling. To facilitate efficient resource allocation design for large IRSs, we employ a codebook-based optimization framework, where the IRS is divided into several tiles and the phase-shift elements of each tile are selected from a pre-defined codebook. The resource allocation algorithm design is formulated as an optimization problem for the maximization of the average sum data rate of the eMBB users over a time slot while guaranteeing the quality-of-service (QoS) of each URLLC user in each mini-slot. An iterative algorithm based on alternating optimization (AO) is proposed to find a high-quality suboptimal solution. As a case study, the proposed algorithm is applied in an industrial indoor environment modelled via the Quadriga channel simulator. Our simulation results show that the proposed algorithm design enables the coexistence of eMBB and URLLC users and yields large performance gains compared to three baseline schemes. Furthermore, our simulation results reveal that the proposed two-time scale resource allocation design incurs only a small performance loss compared to the case when the IRSs are optimized in each mini-slot.

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