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A Novel Joint Problem of Routing Scheduling and Variable-Width Channel Allocation in WMNs

机译:WMN中的路由调度和可变宽度信道分配的新型联合问题

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摘要

This paper investigates a novel joint problem of routing, scheduling, and channel allocation for single-radio multichannel wireless mesh networks in which multiple channel widths can be adjusted dynamically through a new software technology so that more concurrent transmissions and suppressed overlapping channel interference can be achieved. Although the previous works have studied this joint problem, their linear programming models for the problem were not incorporated with some delicate constraints. As a result, this paper first constructs a linear programming model with more practical concerns and then proposes a simulated annealing approach with a novel encoding mechanism, in which the configurations of multiple time slots are devised to characterize the dynamic transmission process. Experimental results show that our approach can find the same or similar solutions as the optimal solutions for smaller-scale problems and can efficiently find good-quality solutions for a variety of larger-scale problems.
机译:本文研究了单无线电多信道无线网状网络的路由,调度和信道分配的新的联合问题,其中可以通过一种新的软件技术动态调整多个信道宽度,从而可以实现更多的并发传输和抑制的重叠信道干扰。尽管先前的工作已经研究了这个联合问题,但是他们针对该问题的线性编程模型并未包含一些微妙的约束。因此,本文首先构建了一个具有更多实际问题的线性规划模型,然后提出了一种具有新颖编码机制的模拟退火方法,其中设计了多个时隙的配置来表征动态传输过程。实验结果表明,我们的方法可以找到与小规模问题的最优解决方案相同或相似的解决方案,并且可以有效地为各种大规模问题找到优质的解决方案。

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