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A Hybrid Model-Based and Data-Driven Approach to Spectrum Sharing in mmWave Cellular Networks

机译:基于混合模型和数据驱动的MMWAVE蜂窝网络频谱共享方法

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摘要

Inter-operator spectrum sharing in millimeter-wave bands has the potential of substantially increasing the spectrum utilization and providing a larger bandwidth to individual user equipment at the expense of increasing inter-operator interference. Unfortunately, traditional model-based spectrum sharing schemes make idealistic assumptions about inter-operator coordination mechanisms in terms of latency and protocol overhead, while being sensitive to missing channel state information. In this paper, we propose hybrid model-based and data-driven multi-operator spectrum sharing mechanisms, which incorporate model-based beamforming and user association complemented by data-driven model refinements. Our solution has the same computational complexity as a model-based approach but has the major advantage of having substantially less signaling overhead. We discuss how limited channel state information and quantized codebook-based beamforming affect the learning and the spectrum sharing performance. We show that the proposed hybrid sharing scheme significantly improves spectrum utilization under realistic assumptions on inter-operator coordination and channel state information acquisition.
机译:在毫米波频带中的操作型频谱共享具有基本上增加频谱利用率并以增加操作频道间干扰的代价,为各个用户设备提供更大的带宽。不幸的是,基于传统的基于模型的频谱共享方案在延迟和协议开销方面对操作员间协调机制的理想主义假设,同时对缺少信道状态信息敏感。在本文中,我们提出了基于混合模型和数据驱动的多运营商频谱共享机制,其包括基于模型的波束成形和用户关联由数据驱动的模型改进辅成。我们的解决方案具有与基于模型的方法相同的计算复杂性,但具有基本上不那么少的信号开销的主要优点。我们讨论了通道状态信息和基于量化的基于码本的波束成形如何影响学习和频谱共享性能。我们表明,拟议的混合分享方案在运营商协调和渠道国家信息收购的现实假设下显着提高了频谱利用。

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