论文标题

可重新配置的智能表面辅助跨媒体通信的设计

Design of Reconfigurable Intelligent Surface-Aided Cross-Media Communications

论文作者

Wu, Mingming, Xiao, Yue, Gao, Yulan, Xiao, Ming

论文摘要

提出了一种可重新配置的智能表面(RIS)辅助混合反射/发射器设计,以实现跨媒体通信中的信息交换。为了追求能源效率和低成本实施之间的平衡,在集成的多媒体系统中采用了云管理传输协议。具体而言,使用基于RIS的双跳传输的帮助,首先将使用异质传播介质的设备消息传输到中等匹配的AP。中间频率转换操作后,接入点(AP)将接收的信号上传到云中,以进一步解调和解码过程。基于时间划分多重访问(TDMA),云能够区分传输到不同设备的下行链路数据,并通过专用的控制渠道将其转换为RIS控制器的输入。因此,按照基于索引调制的发射器的想法,RIS可以被动地反射入射载体,并在预关注的插槽中使用交换的信息反射回原始接收器。此外,迭代优化算法用于优化RIS阶段,在延迟约束的跨媒体通信模型中共同传输速率和时间分配。我们的仿真结果表明,所提出的基于RIS的方案可以改善端到端吞吐量,而基于AP的传输,相等的时间分配,随机和离散相调整基准。

A novel reconfigurable intelligent surface (RIS)-aided hybrid reflection/transmitter design is proposed for achieving information exchange in cross-media communications. In pursuit of the balance between energy efficiency and low-cost implementations, the cloud-management transmission protocol is adopted in the integrated multi-media system. Specifically, the messages of devices using heterogeneous propagation media, are firstly transmitted to the medium-matched AP, with the aid of the RIS-based dual-hop transmission. After the operation of intermediate frequency conversion, the access point (AP) uploads the received signals to the cloud for further demodulating and decoding process. Based on time division multiple access (TDMA), the cloud is able to distinguish the downlink data transmitted to different devices and transforms them into the input of the RIS controller via the dedicated control channel. Thereby, the RIS can passively reflect the incident carrier back into the original receiver with the exchanged information during the preallocated slots, following the idea of an index modulation-based transmitter. Moreover, the iterative optimization algorithm is utilized for optimizing the RIS phase, transmit rate and time allocation jointly in the delay-constrained cross-media communication model. Our simulation results demonstrate that the proposed RIS-based scheme can improve the end-to-end throughput than that of the AP-based transmission, the equal time allocation, the random and the discrete phase adjustment benchmarks.

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