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首页> 外文期刊>IEEE transactions on network and service management >A Robust and Resilient Load Balancing Framework for SoftRAN-Based HetNets With Hybrid Energy Supplies
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A Robust and Resilient Load Balancing Framework for SoftRAN-Based HetNets With Hybrid Energy Supplies

机译:具有混合能源供应的基于Softran的Hetnet的强大和有弹性负载平衡框架

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Heterogeneous networks (HetNets) have been widely accepted as a promising architecture to fulfill the ever-increasing demand for capacity expansion. However, the energy consumed by the dense underlay of the large number of micro base stations that is required to achieve capacity expansion, exacerbates the energy inefficiency of cellular networks. Hybrid energy sources, i.e., the grid and green energy sources, can be used to meet the HetNets excessive demand for energy. In such networks, traffic load balancing becomes crucial to balance the trade-off between green energy utilization and quality of service (QoS) provisioning. Leveraging software-defined radio access networks (SoftRAN) and considering inaccuracy of vital network measurements, we develop an autonomous, robust and resilient load balancing framework. The framework consists of two major modules. First, the H-infinity regulator module, which guides the temporal utilization of green energy and distribution of network loads among base stations (BSs) in order to achieve long-term average QoS provisioning. Second, a user association module that optimizes user association and its corresponding traffic loads to minimize the network traffic latency while respecting loads proposed by the H-infinity regulator. Extensive performance evaluations demonstrate the efficacy of the proposed framework in autonomously balancing the trade-off between green energy consumption and traffic latency. Furthermore, performance evaluations confirm the robustness of the proposed framework to estimation inaccuracy and its resilience to sudden changes in network parameters.
机译:异构网络(Hetnets)已被广泛被广泛被接受为有前途的架构,以满足不断增长的能力扩张需求。然而,在需要达到容量膨胀所需的大量微基站的密集衬底消耗的能量加剧了蜂窝网络的能量低效率。混合能源,即网格和绿色能源,可用于满足Hetnets对能源的过度需求。在这种网络中,流量负载平衡对于平衡绿色能量利用率和服务质量(QoS)配置之间的权衡变得至关重要。利用软件定义的无线电接入网络(SOFTRAN)并考虑重要网络测量的不准确性,我们开发了一种自主,坚固且有弹性的负载平衡框架。该框架由两个主要模块组成。首先,H-Infinity调节器模块,引导基站(BSS)之间的绿色能量和网络负载分布的时间利用,以实现长期平均QoS供应。其次,一个用户关联模块,其优化用户关联及其相应的业务负载,以最小化网络流量延迟,同时尊重H-Infinity调节器提出的负载。广泛的绩效评估表明了拟议框架自主平衡绿色能耗和交通延迟之间的权衡的效果。此外,性能评估证实了拟议框架的稳健性,以估计不准确性及其对网络参数突然变化的恢复力。

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