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A Novel Approach for Centralized 3D Radio Resource Allocation and Scheduling in Dense HetNets for 5G Control-/User-plane Separation Architectures

机译:用于5G控制/用户平面分离架构的密集HetNet中集中式3D无线电资源分配和调度的新方法

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This paper presents a centralized 3-dimensional radio resources (namely, time, frequency, and power) allocation and scheduling approach for control-plane and user-plane (C-/U-plane) separation architectures for fifth generation mobile networks. A central station is considered where schedulers of all base stations (BSs) are located. We consider a multi-tier network that comprises of a macrocell BS (MCBS), several outdoor picocell BSs, and a number of indoor femtocell BSs (FCBSs) deployed in a number of multi-storage buildings. The system bandwidth is reused in FCBSs within each building orthogonally. In contrast to the conventional almost blank subframe, we consider a fully blank subframe based time-domain enhanced intercell interference coordination to split completely C-/U-plane traffic such that the control-plane can be served only by the MCBS and the user-plane of user equipments by their respective BSs. We propose two power management schemes for FCBSs based on whether or not the coordinated multi-point communication with joint transmission (JT CoMP) is employed during off-state of a FCBS and develop a power control mechanism for both a single user and multi-user per FCBS scenarios. An optimal value of average activation factor (OAF) for a FCBS is derived to trade-off its serving capacity and transmit power saving factor. It is shown that in order to improve the network capacity, a FCBS needs to operate at an average activation factor (AAF) greater than its OAF using JT CoMP to serve neighboring on-state FCBSs during its normal off-state, whereas at an AAF less than the OAF to improve the energy efficiency. With a system level simulation, we show that the capacity of a FCBS increases, whereas its power saving factor decreases linearly with an increase in its AAF because of serving increased traffic, and an OAF of 0.5 for the capacity scaling factor k = 1/2 and greater than 0.5 for k? 1 are found.
机译:本文提出了用于第五代移动网络的控制平面和用户平面(C / U平面)分离架构的集中式3维无线电资源(即时间,频率和功率)分配和调度方法。所有基站(BS)的调度程序都位于中央站。我们考虑一个多层网络,该网络由宏小区BS(MCBS),几个室外微微小区BS和部署在许多多层存储建筑物中的许多室内毫微微小区BS(FCBS)组成。系统带宽在每个建筑物内的FCBS中正交使用。与传统的几乎空白的子帧相比,我们考虑基于完全空白的子帧的时域增强小区间干扰协调,以完全拆分C- / U平面流量,从而控制平面只能由MCBS和用户用户设备各自的BS的平面。我们基于FCBS处于关闭状态时是否采用联合传输的协作式多点通信(JT CoMP),提出了两种FCBS的电源管理方案,并针对单用户和多用户开发了一种电源控制机制每个FCBS方案。得出FCBS的平均激活因子(OAF)的最佳值,以权衡其服务能力和发射功率节省因子。结果表明,为了提高网络容量,FCBS需要以比其OAF更大的平均激活因子(AAF)进行操作,使用JT CoMP在其正常关闭状态下为相邻的On-state FCBS提供服务,而在AAF上少于OAF以提高能源效率。通过系统级仿真,我们发现FCBS的容量增加了,而其功率节省因数随着服务流量的增加而随着AAF的增加而线性降低,并且容量缩放因数k = 1/2的OAF为0.5并且对于k≤1发现大于0.5。

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