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Independent Coordination for Sharing Spectrum and Small Cells

机译:共享频谱和小细胞的独立协调

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Sharing of spectrum and radio access networks (RANs) has been a trend for future mobile networks to economically cope with fast growth in wireless data traffic and services. Although technical and regulatory advancements in dynamic spectrum sharing and wireless network virtualization (WNV) have brought new possibility of sharing, it is unclear how individual mobile network operators (MNOs) may benefit from sharing while in competition. In this regard, we propose a novel framework of independent service sharing coordination (ISSC). The framework sets up an independent platform that respectively collects information from all MNOs for coordination and ensures individual confidentiality at the same time. Each MNO plays both seller and buyer of shared resources and has chicken-egg problems between buy and sell decisions. The framework then adopts a Nash game theoretic approach, where the ISSC platform finds individual MNOs' strategies by iterating over demand estimation, resource allocation, price determination, and subscriber number estimation to find the best response for each MNO. Numerical study demonstrates that ISSC may facilitate all-win sharing of spectrum and RANs among competing MNOs, especially when MNOs have a medium level of demands with different spectrum availability and small cell coverages.
机译:分享频谱和无线电接入网络(RAN)是未来移动网络在经济地应对无线数据流量和服务的快速增长的趋势。虽然动态频谱共享和无线网络虚拟化(WNV)的技术和监管进步带来了新的共享可能性,但目前尚不清楚单个移动网络运营商(MNOS)如何在竞争中受益于共享。在这方面,我们提出了一部新颖的独立服务共享协调框架(ISSC)。该框架建立了一个独立的平台,分别从所有MNOS收集信息以进行协调,并同时确保单个机密性。每个MNO都扮演共享资源的卖方和买方,并在买卖决策之间有鸡蛋问题。该框架然后采用纳什游戏理论方法,其中通过迭代需求估计,资源分配,价格确定和用户号码估计来找到每个MNO的最佳响应来找到个人MNOS的策略。数值研究表明,ISSC可以促进竞争MNO之间的频谱和RAN的全赢分享,特别是当MNOS具有不同频谱可用​​性和小型电池覆盖的中等水平的要求时。

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