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A Relay-Aided Device-to-Device-Based Load Balancing Scheme for Multitier Heterogeneous Networks

机译:多层异构网络的基于中继的设备间负载均衡方案

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As a key feature of the next generation wireless networks (5G), heterogeneous networks (HetNets) architecture is embraced as the fundamental network technology to meet the immensely diverse service requirements and characteristics of various devices. By introducing underlaying device-to-device (D2D) communication into HetNets, it is possible to offload the unevenly distributed load from the overloaded macrocell to the uncongested femtocell in multitier HetNets. However, the performance of load balancing (LB) scheme heavily depends on the D2D relay selection method as well as the potential resource reuse interference brought by underlay D2D relaying. In order to improve resources utilization ratio and mitigate the resource reuse interference, an LB strategy based on D2D relaying is proposed. To accommodate more new users into the already overloaded macrocell, the macro user equipment with poor link quality will be first transferred into nearby uncongested femtocells by D2D relaying. Then, the released macrocell resource can be allocated to new users who cannot access femtocell due to location restriction. Furthermore, we also propose a two-stage relay selection and resource allocation scheme which not only minimizes the potential interference caused by resource reuse but also guarantees the transmission requirement of different users. Extensive simulation results demonstrate that by taking advantage of D2D relaying, the proposed LB algorithm can effectively adjust the unbalanced load between macrocell and femtocells, which achieves improved performance of the whole HetNets.
机译:作为下一代无线网络(5G)的一项重要功能,异构网络(HetNets)体系结构已被视为一种基本的网络技术,可以满足多种服务需求和各种设备的特性。通过将底层的设备到设备(D2D)通信引入到HetNet中,可以将多层HetNet中不均匀分布的负载从过载的宏小区转移到未拥塞的毫微微小区。但是,负载平衡(LB)方案的性能在很大程度上取决于D2D中继选择方法以及底层D2D中继带来的潜在资源重用干扰。为了提高资源利用率,减轻资源重用干扰,提出了一种基于D2D中继的LB策略。为了将更多的新用户容纳到已经超负荷的宏小区中,链路质量差的宏用户设备将首先通过D2D中继转移到附近的未拥塞的毫微微小区中。然后,可以将释放的宏小区资源分配给由于位置限制而不能访问毫微微小区的新用户。此外,我们还提出了一种两阶段的中继选择和资源分配方案,该方案不仅最小化了由资源重用引起的潜在干扰,而且可以保证不同用户的传输需求。大量的仿真结果表明,该算法利用D2D中继技术,可以有效地调整宏小区与毫微微小区之间的不平衡负载,从而提高了整个HetNets的性能。

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