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ITLinQ: A New Approach for Spectrum Sharing in Device-to-Device Communication Systems

机译:ITLinQ:设备间通信系统中频谱共享的新方法

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摘要

We consider the problem of spectrum sharing in device-to-device communication systems. Inspired by the recent optimality condition for treating interference as noise, we define a new concept of information-theoretic independent sets (ITISs), which indicates the sets of links for which simultaneous communication and treating the interference from each other as noise is information-theoretically optimal (to within a constant gap). Based on this concept, we develop a new spectrum sharing mechanism, called information-theoretic link scheduling (ITLinQ), which at each time schedules those links that form an ITIS. We first provide a performance guarantee for ITLinQ by characterizing the fraction of the capacity region that it can achieve in a network with sources and destinations randomly located within a fixed area. Furthermore, we demonstrate how ITLinQ can be implemented in a distributed manner, using an initial two-phase signaling mechanism that provides the required channel state information at all the links. Through numerical analysis, we show that distributed ITLinQ can outperform similar state-of-the-art spectrum sharing mechanisms, such as FlashLinQ, by more than 100% of sum-rate gain, while keeping the complexity at the same level. Finally, we discuss a variation of the distributed ITLinQ scheme, which can also guarantee fairness among the links in the network and numerically evaluate its performance.
机译:我们考虑了设备间通信系统中的频谱共享问题。受到最近将干扰视为噪声的最佳条件的启发,我们定义了 信息理论独立集 (ITISs)的新概念,它指出了同时存在的链接集从理论上讲,通信和将彼此的干扰视为噪声是最佳的(在恒定的间隙内)。基于此概念,我们开发了一种新的频谱共享机制,称为 信息理论链接调度 (ITLinQ),该机制每次都会调度构成ITIS的那些链接。首先,我们通过表征源和目标随机位于固定区域内的网络中ITLinQ可以实现的容量区域份额来为ITLinQ提供性能保证。此外,我们演示了如何使用初始的两阶段信令机制以分布式方式实现ITLinQ,该机制在所有链路上提供所需的信道状态信息。通过数值分析,我们表明,分布式ITLinQ可以以超过100%的总和增益来胜过类似的最新频谱共享机制(例如FlashLinQ),同时将复杂度保持在同一水平。最后,我们讨论了分布式ITLinQ方案的一种变体,它还可以保证网络中链路之间的公平性,并对其性能进行数值评估。

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