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QoS Guaranteed Resource Allocation Scheme for Cognitive Femtocells in LTE Heterogeneous Networks with Universal Frequency Reuse

机译:具有通用频率复用的LTE异构网络中的认知毫微微小区的QoS保证资源分配方案

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摘要

In this paper, we propose a novel resource allocation scheme for co-channel interference avoidance in LTE heterogeneous networks with universal spectrum reuse where both macro users (MUs) and cognitive femto base stations (FBSs) within the same macrocell coverage can dynamically reuse whole spectrum. Specifically, resource blocks (RBs) are shared between cognitive FBSs in underlay mode while the resource sharing among FBSs and MUs is in overlay mode. The macrocell is divided into inner and outer regions with the inner region further divided into three sectors. The proposed scheme addresses co-channel interference (CCI) by employing fractional frequency reuse (FFR) for RB allocation in the outer region of the macrocell and increase the distance of users that reuse the same RB within the macrocell. Part of RBs are allocated to the outer region of the macrocell with a FFR factor of 1/3, while the remaining RBs are dynamically allocated to each sector in the inner region of macrocell based on MUs demand to efficiently utilize the available spectrum. A basic macro base station (MBS) assistance is required by the FBS in selection of suitable RB to avoid interference with MU in each sector. With the proposed solution, both macro and femto users can dynamically access the whole spectrum while having minimum bandwidth guarantee even under fully congested scenarios. Moreover, the proposed scheme practically eliminates the cross-tier interference and the CCI problem in heterogeneous network reduces to inter-femtocell interference. The throughput and outage performances of the proposed scheme are validated through extensive simulations under LTE network parameters. Simulation results show that the proposed scheme achieves a performance gain of more than 1.5 dB in terms of SINRs of both macro user and femto user compared to traditional cognitive and non-cognitive schemes without bandwidth guarantee for femtocells.
机译:在本文中,我们提出了一种新的资源分配方案,该方案可避免具有通用频谱复用的LTE异构网络中的同频干扰,其中在相同宏小区覆盖范围内的宏用户(MU)和认知毫微微基站(FBS)都可以动态复用整个频谱。具体而言,在认知FBS之间以底层模式共享资源块(RB),而在FBS和MU之间的资源共享处于覆盖模式。宏小区被分为内部和外部区域,而内部区域又被分为三个扇区。所提出的方案通过在宏小区的外部区域中对RB分配采用分数频率复用(FFR)来解决同信道干扰(CCI),并且增加了在宏小区内复用相同RB的用户的距离。一部分RB以FFR因子1/3分配给宏小区的外部区域,而剩余的RB根据MU需求动态分配给宏小区内部区域的每个扇区,以有效利用可用频谱。 FBS在选择合适的RB时需要基本的宏基站(MBS)协助,以避免干扰每个扇区中的MU。利用提出的解决方案,即使在完全拥塞的情况下,宏用户和毫微微用户都可以动态访问整个频谱,同时具有最小的带宽保证。此外,所提出的方案实际上消除了跨层干扰,并且异构网络中的CCI问题减少到毫微微小区之间的干扰。通过在LTE网络参数下进行广泛的仿真,验证了所提方案的吞吐量和中断性能。仿真结果表明,与传统的没有毫微微小区带宽保证的认知和非认知方案相比,该方案在宏用户和毫微微用户的SINR方面均实现了超过1.5 dB的性能增益。

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