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Dynamic resource management for LTE-based hybrid access femtocell systems

机译:基于LTE的混合接入毫微微蜂窝基站系统的动态资源管理

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摘要

Hybrid access femtocells for long term evolution (LTE)-based cellular networks provide a tradeoff between closed and open access femtocells whereby all subscribers are granted access albeit with priority given to closed access subscribers. Due to the need to accommodate both closed and open access subscribers, quality of service (QoS) provisioning for LTE-based hybrid access femtocells has become more challenging. This paper addresses this issue and proposes a new dynamic resource management scheme for such hybrid architectures. In particular, the proposed scheme first classifies and performs lexicographic admission control on the incoming traffic data flows using an optimal greedy algorithm. A suboptimal delay-bounded packet scheduling algorithm and a dual decomposition-based power allocation algorithm are developed to solve the non-convex maximization problem such that the weighted sum rate of each femtocell is maximized, subject to bounded packet delays and power constraints. Simulation results show that the proposed scheme can significantly outperform existing schemes in terms of QoS, throughput and fairness.
机译:用于基于长期演进(LTE)的蜂窝网络的混合接入毫微微小区提供了封闭式和开放式接入毫微微小区之间的折衷,由此尽管具有优先权给封闭式接入用户,也向所有用户授予接入。由于需要容纳封闭式和开放式接入用户,因此基于LTE的混合式接入毫微微小区的服务质量(QoS)设置变得更具挑战性。本文解决了这个问题,并针对这种混合架构提出了一种新的动态资源管理方案。特别地,所提出的方案首先使用最优贪婪算法对传入的交通数据流进行分类并执行字典编排准入控制。为了解决非凸最大化问题,开发了次优延迟限制分组调度算法和基于对偶分解的功率分配算法,以使每个毫微微小区的加权和速率最大化,这要受到有限分组延迟和功率约束的影响。仿真结果表明,该方案在服务质量,吞吐量和公平性方面均明显优于现有方案。

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