Integration of Aerial-Relay-Based Network With Terrestrial Network Towards B5G/6G Evolution

T. Guo
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Abstract

Aimed at boosting spectrum utilization towards B5G/6G evolution, this paper studies an overlying network that is built by using “dummy” aerial relays and shares the frequency band with a primary network, where the low-cost relays without using sophisticated transmit beamforming generate interference to the primary network. The main objectives are, by using collaborative transmitter precoding, i) to increase Signal-to-Leakage Ratio (SLR) which is the ratio of signal power at the intended receiver to interference power at an unintended receiver, and ii) to reduce the overlying network’s total transmit power. A performance trade-off framework based on robust optimization is proposed to balance these two contradicting objectives, with consideration of the relays’ asynchronicity and channel measurement errors. It is found that the relays’ amplification is a sensitive parameter that can be tuned together with the transmitter precoder in optimization. To overcome the problem of unknown uncertainty set in the max-min optimization, a practical technique based on multiple measurements, semi-analytical robust design, is proposed and tested. Performance evaluation results suggest the proposed overlying network is promising toward the two objectives.
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面向B5G/6G演进的空中中继网络与地面网络融合
为了提高向B5G/6G演进的频谱利用率,本文研究了一种使用“虚拟”空中中继构建的覆盖网络,该覆盖网络与主网络共享频段,其中不使用复杂发射波束形成的低成本中继对主网络产生干扰。主要目标是,通过使用协作发射机预编码,i)增加信漏比(SLR),即预期接收器的信号功率与意外接收器的干扰功率之比,ii)降低覆盖网络的总发射功率。考虑到继电器的异步性和信道测量误差,提出了一种基于鲁棒优化的性能权衡框架来平衡这两个相互矛盾的目标。结果表明,继电器的放大是一个敏感参数,可以与发射机预编码器一起进行优化。为了克服极大极小优化中存在的未知不确定集问题,提出了一种基于多次测量的实用方法——半解析稳健设计。性能评估结果表明,所提出的覆盖网络有望实现这两个目标。
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