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Cloud Empowered Cognitive Inter-cell Interference Coordination for Small Cellular Networks

机译:小蜂窝网络的云赋权认知小区间干扰协调

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摘要

In this article, we present a Cloud empowered Cognitive Inter-Cell Interference Coordination (C2-ICIC) scheme for small cellular networks. The scheme leverages a recently proposed cloud radio access network (C-RAN) architecture for enabling intra-tier coordination and relaxes the need for inter-tier coordination by adopting the phantom cell architecture. Employing tools from stochastic geometry, we characterize the downlink success probability for a Mobile User (MU) scheduled under the proposed coordination scheme. It is shown that, compared to un-coordinated scheduling, significant performance gains can be realized in ultra dense small cell deployment scenarios under the proposed C2-ICIC scheme. This is attributed to the robust interference protection provisioned by the scheme. It is demonstrated that the gains are particularly large for the users experiencing a weak received signal strength. Indeed, for these users, the received signal-to-interference ratio (SIR) can only be improved by reducing the experienced aggregate co-channel interference. The closed-form expression derived for the downlink success probability is employed to quantify the link level throughput under the proposed scheme. Finally, we briefly explore the design space of the C2-ICIC scheme in terms of interference protection cap which determines both the downlink throughput of the MU scheduled in the coordination mode and the transmission opportunity for the co-channel small cells.
机译:在本文中,我们提出了一种适用于小型蜂窝网络的云授权小区间干扰协调(C2-ICIC)方案。该方案利用了最近提出的云无线电接入网络(C-RAN)体系结构来实现层内协调,并通过采用幻像小区体系结构放松了对层间协调的需求。利用来自随机几何的工具,我们描述了在提出的协调方案下调度的移动用户(MU)的下行链路成功概率。结果表明,与非协调调度相比,在建议的C2-ICIC方案下的超密集小小区部署方案中,可以实现显着的性能提升。这归因于该方案提供的强大的干扰保护。事实证明,对于接收信号强度较弱的用户而言,增益特别大。确实,对于这些用户,只能通过减少经验的集合同信道干扰来改善接收信号干扰比(SIR)。根据下行链路成功概率得出的封闭式表达式用于量化所提出方案下的链路级吞吐量。最后,我们从干扰保护帽的角度简要探讨了C2-ICIC方案的设计空间,它确定了以协调模式调度的MU的下行链路吞吐量和同信道小型小区的传输机会。

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