多跳分布式认知无线网络的跨层资源分配方法

S. C. Jha, Umesh Phuyal, V. Bhargava
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引用次数: 6

摘要

在多跳分布式认知无线网络中,链路层资源分配必须考虑数据包在网络中已经过的跳数信息,以优化整体资源利用率。数据包在经过一些跳之后丢失,会导致前一跳分配给它的所有资源都被浪费掉。现有的资源分配方案可能无法在这种网络中提供最优的资源利用,这一问题被极大地忽视了。因此,在本文中,我们提出了一种方案,将传输功率分配给不同的数据包,有利于那些在到达特定节点之前经过较多跳数的数据包。提出了一种链路层从网络层模块获取跳数信息的跨层方法。该方案的分布式实现是可能的,因为每个节点都可以访问这些信息。我们将功率分配问题化为一个凸优化问题,并利用拉格朗日对偶得到其解析解。仿真结果表明,该方案能够在不降低吞吐量和中断性能的情况下,最大限度地减少数据包在前一跳中使用的网络资源的浪费。
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Cross-layer resource allocation approach for multi-hop distributed cognitive radio network
In multi-hop distributed cognitive radio network, link layer resource allocation must consider the information about number of hops packets have already traveled in the network in order to optimize the overall resource utilization. The loss of a packet after traveling some hops results in waste of all the resources allocated to it in previous hops. The existing resource allocation schemes may not provide optimal resource utilization in such network as this issue has been greatly ignored. Therefore, in this paper, we propose a scheme to allocate transmit power to different packets favoring those which have traveled more hops before reaching a particular node. We present a cross-layer approach in which link layer gets the hop-count information from network layer module. Distributed implementation is possible with the proposed scheme because each node can access this information. We formulate the power allocation problem as a convex optimization problem and obtain its analytical solution by using Lagrangian duality. Simulation results show that the proposed scheme is capable of minimizing wastage of network resources used by packets in their previous hops without any degradation in throughput and outage performance.
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