双域干扰分类器:一种干扰感知的资源分配算法

Matthieu De Mari, E. Strinati, M. Debbah
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引用次数: 5

摘要

异构网络的性能受到多个接入点在同一地理区域内运行、业务覆盖重叠所产生的干扰的强烈限制。通常的理解是,干扰,通常被处理为附加噪声,损害传输,因此必须理想地避免或至少强烈限制。然而,最近在信息论和连续干扰消除(SIC)技术领域的研究已经证明,干扰可能不一定被视为对手,而可能成为盟友。在本文中,我们提出了一种新的干扰感知资源管理算法,其中系统可以只控制其干扰感知。在由几个下行链路用户和覆盖重叠的接入点组成的系统中,我们的目标是定义在每个接收器上处理干扰的最有效的频谱方式。基于3区干扰分类器,系统中的两个用户可以将干扰视为噪声,将传输正交以避免干扰,或者通过基于sic的技术消除接收信号中的干扰。我们的研究表明,当以最大化总频谱效率为目标时,忽略或避免干扰并不总是最佳选择。在理论研究的基础上,我们提出了一种干扰分类算法,该算法对每个用户只有2种允许的状态。最后,我们通过仿真结果评估了其显著的性能改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Two-regimes interference classifier: An interference-aware resource allocation algorithm
Performance of heterogeneous network is strongly limited by the interference due to multiple access points operating in the same geographical area, with overlapping service coverage. The common understanding is that interference, classically processed as additive noise, compromises the transmission and therefore must be ideally avoided or at least strongly limited. However, recent investigations in the domain of information theory and successive interference cancellation (SIC) techniques have proved that interference may not necessarily be treated as an opponent, but may become an ally. In this paper, we propose a novel interference aware resource management algorithm, where the system may only control its interference perception. In a system consisting of a couple of downlink users and access points with overlapping coverage, we aim to define the most spectral-efficient way to process interference at each receiver. Based on a 3-regimes interference classifier, both users in the system may either treat interference as noise, orthogonalize transmissions so that interference may be avoided, or cancel interference out of the received signal via SIC-based techniques. Our study shows that, when aiming at maximizing total spectral efficiency, ignoring or avoiding interference is not always the best option. Based on our theoritical study, we propose an interference classification algorithm, with only 2 admissible regimes for each user. Finally, we assess its notable performance improvement by simulation results.
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