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Online multicast tree construction with bandwidth and delay constraints in multi-channel multi-radio wireless mesh networks

机译:具有带宽和多通道多无线无线网状网络中带宽和延迟约束的在线组播树结构

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摘要

This paper deals with online QoS multicast tree construction problem, which is essential to support multimedia services, in multi-channel multi-radio wireless mesh networks. The proposed algorithm satisfies both delay and bandwidth requirements of each arrived session. It breaks down the original problem into two phases of satisfying delay and bandwidth constraints. The first phase devotes to preserving delay constraint of the arrived session, in which a number of delay-bounded paths are determined between each receiver and the source node. In the proposed scheme, to diminish the utilized bandwidth, the overlapping of the regarding paths of the receivers is maximized as much as possible. We propose a mathematical model to satisfy bandwidth requirement in the second phase, which constructs the tree over the selected paths. The data transmission rate on the tree is set to the requested rate by the session, to satisfy its bandwidth requirement. The proposed model has a global view over the network and constructs the most appropriate trees. It also exploits wireless broadcast advantage property to enhance the performance. Through extensive simulations, the effectiveness of the proposed algorithm is verified. In particular, it improves the acceptance rate by 60% compared to previous schemes.
机译:本文涉及在线QoS组播树施工问题,这对于支持多媒体服务,在多通道多无线无线网络网络中是必不可少的。所提出的算法满足每个到达会话的延迟和带宽要求。它分为原始问题分为令人满意的延迟和带宽约束的两个阶段。第一阶段致力于保留到达会话的延迟约束,其中在每个接收器和源节点之间确定多个延迟界限路径。在所提出的方案中,为了减少利用带宽,接收器的路径的重叠尽可能地最大化。我们提出了一种数学模型来满足第二阶段的带宽要求,其在所选路径上构造树。树上的数据传输速率被会话设置为所请求的速率,以满足其带宽要求。所提出的模型具有通过网络的全球视图,构建最合适的树木。它还利用无线广播优势属性来增强性能。通过广泛的模拟,验证了所提出的算法的有效性。特别是,与先前的方案相比,它将接受率提高了60%。

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