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Adaptive cross-layer resource optimization in heterogeneous wireless networks with multi-homing user equipments

机译:具有多归属用户设备的异构无线网络中的自适应跨层资源优化

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In this paper, we investigate the resource allocation problem in time-varying heterogeneous wireless networks (HetNet) with multi-homing user equipments (UE). The stochastic optimization model is employed to maximize the network utility, which is defined as the difference between the HetNet's throughput and the total energy consumption cost. In harmony with the hierarchical architecture of HetNet, the problem of stochastic optimization of resource allocation is decomposed into two subproblems by the Lyapunov optimization theory, associated with the flow control in transport layer and the power allocation in physical (PHY) layer, respectively. For avoiding the signaling overhead, outdated dynamic in- formation, and scalability issues, the distributed resource allocation method is developed for solving the two subproblems based on the primal-dual decomposition theory. After that, the adaptive re- source allocation algorithm is developed to accommodate the time- varying wireless network only according to the current network state information, i.e. the queue state information (QSI) at radio access networks (RAN) and the channel state information (CSI) of RANs-UE links. The tradeoff between network utility and delay is derived, where the increase of delay is approximately linear in V and the increase of network utility is at the speed of 1/V with a control parameter V . Extensive simulations are presented to show the effectiveness of our proposed scheme.
机译:在本文中,我们研究了具有多归属用户设备(UE)的时变异构无线网络(HetNet)中的资源分配问题。随机优化模型用于最大化网络效用,网络效用定义为HetNet的吞吐量与总能耗成本之差。与HetNet的分层体系结构相协调,利用Lyapunov优化理论将资源分配的随机优化问题分解为两个子问题,分别与传输层的流量控制和物理(PHY)层的功率分配相关。为了避免信令开销,过时的动态信息和可伸缩性问题,基于原始对偶分解理论,开发了分布式资源分配方法来解决两个子问题。之后,仅根据当前的网络状态信息(即无线接入网(RAN)的队列状态信息(QSI)和信道状态信息)来开发自适应资源分配算法,以适应时变无线网络。 CSI)的RANs-UE链接。得出网络效用与延迟之间的折衷,其中延迟的增加在V中近似呈线性,而网络效用的增加是以控制参数V为1 / V的速度。进行了广泛的仿真,以证明我们提出的方案的有效性。

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