多无线电多信道无线网络中链路级资源分配的鲁棒信道分配

Cunqing Hua, Song Wei, Rong L. Zheng
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引用次数: 15

摘要

本文研究了多无线电多信道(MR-MC)无线网络中的链路级资源分配问题。为了量化资源供给方案的鲁棒性,我们提出了干扰裕度的新概念。利用干扰裕度的概念,明确地考虑了链路级通信量需求,提出了一个鲁棒无线电和信道分配问题。该方法的主要优点是对信道可变性和外部干扰源共存的鲁棒性。我们利用广义Benders分解技术来解耦无线电和信道分配(组合约束)和网络资源分配(连续约束),从而有效地解决问题。该算法保证在有限次迭代内收敛到最优解。我们使用从无线网格试验台收集的痕迹和在Qualnet中的模拟研究来评估我们的方案。实验表明,该算法在提供更大的干扰裕度、减少中断和丢包概率方面优于现有算法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Robust channel assignment for link-level resource provision in multi-radio multi-channel wireless networks
In this paper, we investigate the problem of link-level resource provision in multi-radio multi-channel (MR-MC) wireless networks. To quantify robustness of resource provision schemes, we propose the novel concept of interference margin. Using the notion of interference margin, a robust radio and channel assignment problem is formulated that explicitly takes into consideration link-level traffic demands. The key advantage of the proposed formulation is its robustness to channel variability and co-existence of external interference sources. We utilize the generalized Benders decomposition techniques to decouple the radio and channel assignment (combinatorial constraints) and network resource allocation (continuous constraints) so that the problem can be solved efficiently. The proposed algorithm is guaranteed to converge to the optimal solution within a finite number of iterations. We have evaluated our scheme using traces collected from a wireless mesh testbed and simulation studies in Qualnet. Experiments show that the proposed algorithm is superior to existing schemes in providing larger interference margin, and reducing outage and packet loss probabilities.
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