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Towards 5G Cellular: Understanding 3D In-Building Single Band and Multi-band Small Cells with Control/User-plane Coupled and Separation Architectures with a Novel Resource Reuse Approach

机译:迈向5G蜂窝:通过一种新颖的资源重用方法,了解具有控制/用户平面耦合和分离架构的3D内置单频段和多频段小型小区

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In this paper, we present numerous small cell base station, i.e. femtocell base station (FCBS), with control-/user-plane coupled and separation architectures based on the number of transceivers and operating frequency bands to serve control-/user-plane traffic. A single transceiver enabled FCBS can operate at either a co-channel microwave of the overlaid macrocell or a millimeter wave band. For multiple transceivers, dual transceivers are considered operating at both bands. FCBSs are deployed in a number of buildings with each floor modeled as 5 by?5 square-grid apartments. The co-channel interference with FCBSs is avoided using enhanced intercell interference coordination techniques. We propose a static frequency reuse approach and develop an algorithm by avoiding adjacent channel interferences from reusing frequencies in FCBSs. We also develop a resource scheduling algorithm for FCBSs with CUCA and CUSA to evaluate system level performances with a multi-tier network. It is found that a single transceiver co-channel microwave enabled FCBS with CUCA provides the worse, whereas a single or dual transceivers millimeter wave enabled FCBS with CUSA provides the best overall system capacity and FCBSs' energy efficiency performances. Besides, we show the outperformances of the proposed resource reuse approach over an existing approach in literature in terms of system capacity and fairness among FCBSs with CUCA. Finally, we point out the applicability of a multi-band enabled FCBS and several features and issues of FCBSs with CUCA and CUSA.
机译:在本文中,我们介绍了许多小型基站,即毫微微小区基站(FCBS),它们具有基于收发器数量和工作频带的控制/用户平面耦合和分离架构,以服务于控制/用户平面业务。启用了收发器的单个FCBS可以在重叠宏小区的同频微波或毫米波波段上运行。对于多个收发器,双收发器被认为在两个频带上都工作。 FCBS部署在许多建筑物中,每层模型为5 x 5正方形网格的公寓。使用增强的小区间干扰协调技术可以避免与FCBS的同信道干扰。我们提出了一种静态频率重用方法,并通过避免在FCBS中重用频率来避免相邻信道干扰来开发算法。我们还为带有CUCA和CUSA的FCBS开发了一种资源调度算法,以评估多层网络的系统级性能。已发现带有CUCA的单收发器支持同频微波功能的FCBS的情况更糟,而带有CUSA的单收发器或具有毫米波支持的收发器功能的FCBS提供了最佳的整体系统容量和FCBS的能效性能。此外,在系统容量和具有CUCA的FCBS之间的公平性方面,我们在文献中显示了所提出的资源重用方法优于现有方法的性能。最后,我们指出了支持多频段的FCBS的适用性以及CUCA和CUSA的FCBS的若干功能和问题。

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