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Communication-Free Inter-Operator Interference Management in Shared Spectrum Small Cell Networks

机译:共享频谱小型小区网络中的免通信运营商间干扰管理

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Emergence of shared spectrum, such as the 3.5-GHz citizen broadband radio service (CBRS) band in the U.S., promises to broaden the mobile operator ecosystem and lead to proliferation of small cell deployments. We consider the inter-operator interference problem that arises when multiple small cell networks access the shared spectrum. Towards this end, we take a novel communication-free approach that seeks implicit coordination between operators without explicit communication. The key idea is for each operator to sense the spectrum through its mobiles to be able to model the channel vacancy distribution and extrapolate it for the next epoch. We use reproducing kernel Hilbert space kernel embedding of channel vacancy and predict it by vector-valued regression. This predicted value is then relied on by each operator to perform independent but optimal channel assignment to its base stations taking traffic load into account. Via numerical results, we show that our approach, aided by the above channel vacancy forecasting, adapts the spectrum allocation over time as per the traffic demands and more crucially, yields as good as or better performance than a coordination-based approach, even without accounting the overhead of the latter.
机译:共享频谱的出现,例如美国的3.5 GHz公民宽带无线电服务(CBRS)频段,有望扩大移动运营商生态系统并导致小蜂窝部署的扩散。我们考虑了当多个小型小区网络访问共享频谱时出现的运营商间干扰问题。为此,我们采取了一种新颖的无通信方法,该方法寻求操作员之间的隐式协调而无需显式通信。关键思想是,每个运营商都可以通过其移动设备感知频谱,从而能够对信道空位分布进行建模并推断出下一个时期。我们使用通道空缺的再现内核Hilbert空间内核嵌入,并通过矢量值回归对其进行预测。然后,每个运营商都依赖此预测值,以在考虑到业务负载的情况下对其基站执行独立但最佳的信道分配。通过数值结果,我们表明,在上述信道空缺预测的辅助下,我们的方法可以根据流量需求随时间调整频谱分配,更重要的是,即使不考虑成本,其收益也比基于协调的方法好或更好的性能后者的开销。

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