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RIS-Aided LDM System: A New Prototype in Broadcasting System

机译:RIS辅助LDM系统:广播系统的新原型

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摘要

Layer-division multiplexing (LDM) system has developed with significant improvement in spectrum efficiency and service diversity. LDM technology, that superposes multiple signals with different transmit powers, has been adopted by ATSC 3.0 to deliver robust high-definition services. However, due to the high mobility of devices, the wide signal coverage, and the uneven geographical channel condition, there exists under-utilized energy and significant potential of enhancing communication capacity in the LDM system. In this paper, we employ reconfigurable intelligent surface (RIS) to improve the reception quality in the LDM system, especially the SINR performance of the terminals in the edge area. We formulate a problem of maximizing the minimum SINR among all the terminals by jointly optimizing the power control and pairing mechanism, which is a Mixed-integer Nonlinear Programming (MINLP) problem. To solve it, we use the convex-concave procedure (CCCP). We further explore the high-mobility scenario with the limited channel state information (CSI) and the missing knowledge of detailed prediction of terminals’ mobility. We use Brownian Motion to model the possible variation of the terminals’ positions in the high mobility scenario to guarantee the successful reception probability. The analysis shows the RIS can bring obvious SINR gain to the LDM system, and the mobility modification could greatly help improve the successful reception probability.
机译:层分复用(LDM)系统的发展在频谱效率和业务多样性方面得到了显著提高。ATSC 3.0 已采用 LDM 技术叠加具有不同发射功率的多个信号,以提供强大的高清服务。然而,由于器件的移动性高、信号覆盖范围广、地理信道条件不均衡等原因,LDM系统存在能源利用不足和增强通信能力的巨大潜力。本文采用可重构智能表面(RIS)来提高LDM系统的接收质量,特别是边缘区域终端的SINR性能。通过联合优化功率控制和配对机制,提出一个使所有终端之间的最小SINR最大化问题,这是一个混合整数非线性规划(MINLP)问题。为了解决这个问题,我们使用凸凹过程(CCCP)。本文进一步探讨了信道状态信息有限(CSI)和终端移动性详细预测知识缺失的高移动性场景。我们使用布朗运动对高迁移率场景下终端位置的可能变化进行建模,以保证接收成功概率。分析表明,RIS可以为LDM系统带来明显的SINR增益,迁移率的修改可以大大提高接收成功概率。

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