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Optimization of Free Space Optical Wireless Network for Cellular Backhauling

机译:蜂窝回传的自由空间光无线网络的优化

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With the densification of nodes in cellular networks, free space optic (FSO) connections are becoming an appealing low cost and high rate alternative to copper and fiber backhaul solutions for wireless communication systems. To ensure a reliable cellular backhaul, provisions for redundant disjoint paths between the nodes must be made in the design phase. This paper aims at finding a cost-effective solution to upgrade the cellular backhaul with pre-deployed optical fibers using FSO links and mirror components. Since the quality of the FSO links depends on several factors, such as transmission distance, power, and weather conditions, we adopt an elaborate formulation to calculate link reliability. We present a novel integer linear programming model to approach optimal FSO backhaul design, guaranteeing -disjoint paths connecting each node pair. Next, we derive a column generation method to a path-oriented mathematical formulation. Applying the method in a sequential manner enables high computational scalability. We use realistic scenarios to demonstrate that our approaches efficiently provide optimal or near-optimal solutions, and thereby allow for accurately dealing with the trade-off between cost and reliability.
机译:随着蜂窝网络中节点的致密化,自由空间光纤(FSO)连接正成为无线通信系统的铜缆和光纤回程解决方案的有吸引力的低成本和高速率替代方案。为了确保可靠的蜂窝回程,必须在设计阶段为节点之间的冗余不相交路径做好准备。本文旨在寻找一种经济有效的解决方案,以使用FSO链路和镜像组件通过预部署的光纤升级蜂窝回程。由于FSO链路的质量取决于几个因素,例如传输距离,功率和天气状况,因此我们采用精心设计的公式来计算链路可靠性。我们提出了一种新颖的整数线性规划模型来实现最佳FSO回程设计,从而确保连接每个节点对的不相交路径。接下来,我们将列生成方法推导为面向路径的数学公式。以顺序方式应用该方法可以实现较高的计算可伸缩性。我们使用现实情况来证明我们的方法有效地提供了最佳或接近最佳的解决方案,从而可以准确地处理成本与可靠性之间的折衷。

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