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Optimal Local Data Exchange in Fiber-Wireless Access Network: A Joint Network Coding and Device Association Design

机译:光纤无线接入网络中最佳本地数据交换:联合网络编码和设备关联设计

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For many emerging mobile broadband services and applications, the source and destination are located in the same local region. Consequently, it is very important to design access networks to facilitate efficient local data exchange. In the past few years, most existing studies focus on either the wired or wireless domains. In this paper, we aim to exploit both the wired and wireless domains. Specifically, we consider a Fiber-Wireless access network in which a passive optical network (PON) connects densely deployed base stations. In such a scenario, we propose a novel access scheme, namely, NCDA, where the main idea is to utilize both network coding and device association. To understand the potentials of NCDA, we first formulate a mixed integer nonlinear programming (MINLP) to minimize the weighted number of packet transmissions (WNT), which is related to both the system capacity and energy consumption. We then theoretically analyze the tight upper bounds of the minimal WNT in the PON, which helps us to approximate the original problem by a mixed integer linear programming (MILP). Next, we develop efficient algorithms based on linear programming relaxation to solve the optimal NCDA problem. To validate our design, we conduct extensive simulation experiments, which demonstrate the impact of important network parameters and the promising potentials of the proposed scheme.
机译:对于许多新兴移动宽带服务和应用程序,源和目的地位于同一本地区域。因此,设计接入网络以促进高效的本地数据交换非常重要。在过去的几年里,大多数现有研究侧重于有线或无线域。在本文中,我们的目标是利用有线和无线域。具体地,我们考虑一种光纤 - 无线接入网络,其中无源光网络(PON)连接密集地部署的基站。在这种情况下,我们提出了一种新颖的访问方案,即NCDA,其中主要思想是利用网络编码和设备关联。为了了解NCDA的潜力,首先装配混合整数非线性编程(MINLP),以最小化加权分组传输(WNT),这与系统容量和能量消耗有关。然后,我们理论上分析了PON中最小WNT的紧密上限,这有助于我们通过混合整数线性编程(MILP)来近似原始问题。接下来,我们基于线性编程放松开发高效的算法来解决最佳NCDA问题。为了验证我们的设计,我们进行广泛的仿真实验,展示了重要的网络参数的影响和提出方案的有希望的潜力。

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