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Partially overlapped channels- and flow-based end-to-end channel assignment for multi-radio multi-channel wireless mesh networks

机译:多无线电多信道无线网状网络的部分重叠信道和基于流的端到端信道分配

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摘要

Capacity reduction is a major problem faced by wireless mesh networks. An efficient way to alleviate this problem is proper channel assignment. Current end-toend channel assignment schemes usually focus on the case where channels in distinct frequency bands are assigned to mesh access and backbone, but actually backbone network and access network can use the same IEEE 802.11 technology. Besides, these channel assignment schemes only utilize orthogonal channels to perform channel assignment, and the resulting network interference dramatically degrades network performance. Moreover, Internet-oriented traffic is considered only, and peer-to-peer traffic is omitted, or vice versa. The traffic type does not match the practical network. In this paper, we explore how to exploit partially overlapped channels to perform end-to-end channel assignment in order to achieve effective end-to-end flow transmissions. The proposed flow-based end-to-end channel assignment schemes can conquer the limitations aforementioned. Simulations reveal that loadaware channel assignment can be applied to networks with stable traffic load, and it can achieve near-optimal performance; Traffic-irrelevant channel assignment is suitable for networks with frequent change of traffic load, and it can achieve good balance between performance and overhead. Also, partially overlapped channels' capability of improving network performance is situation-dependent, they should be used carefully.
机译:容量减少是无线网状网络面临的主要问题。缓解此问题的有效方法是适当的信道分配。当前的端到端信道分配方案通常集中在将不同频带中的信道分配给网状接入和骨干网的情况,但是实际上骨干网和接入网可以使用相同的IEEE 802.11技术。此外,这些信道分配方案仅利用正交信道来执行信道分配,并且由此产生的网络干扰极大地降低了网络性能。此外,仅考虑面向Internet的流量,而忽略对等流量,反之亦然。流量类型与实际网络不匹配。在本文中,我们探索如何利用部分重叠的通道来执行端到端的通道分配,以实现有效的端到端流传输。所提出的基于流的端到端信道分配方案可以克服上述限制。仿真表明,负载感知信道分配可以应用于流量负载稳定的网络,并且可以达到接近最佳的性能。与流量无关的信道分配适用于流量负载频繁变化的网络,并且可以在性能和开销之间达到良好的平衡。此外,部分重叠的信道改善网络性能的能力取决于具体情况,应谨慎使用。

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