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首页> 外文期刊>IEEE transactions on mobile computing >Distributed Stable Routing with Adaptive Power Control for Multi-Flow and Multi-Hop Mobile Cognitive Networks
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Distributed Stable Routing with Adaptive Power Control for Multi-Flow and Multi-Hop Mobile Cognitive Networks

机译:多流多跳移动认知网络的自适应功率控制分布式稳定路由

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In most existing routing algorithms for mobile ad hoc cognitive networks (MACNets), nodes are configured with a fixed even maximal transmission power. Links set up by such the algorithms often suffer from excessive co-channel interference, which significantly downgrades performance of MACNets because the link stability highly depends on not only node mobility but also co-channel interference. In this paper, we investigate how to improve route stability through jointly considering routing with adaptive power adjustment and mobility control. We first propose a set of power adjustment policies which dynamically sets up transmission power of cognitive nodes to enable the duration of links potentially interfered as long as possible. We, then, design a routing metric called integrated link stability (ILS) to quantitatively measure the link stability. This novel metric ILS considers both node mobility and channel interference. Finally, we propose a Joint Stable Routing and Adaptive Power Adjustment (J-SRAPA) algorithm for multi-flow and multi-hop MACNets, with the objective of maximizing network throughput. J-SRAPA dynamically adjusts the transmission power in a distributed way to mitigate co-channel interference and to improve channel utilization ratio accordingly, during both route setup and data transmission. NS2-based simulation results demonstrate that our J-SRAPA significantly outperforms related routing algorithms in terms of network throughput, end-to-end transmission delay, and packet loss ratio; and the higher channel interference degree MACNets experience, the more improvement our J-SRAPA will bring to the networks.
机译:在用于移动自组织认知网络(MACNet)的大多数现有路由算法中,节点都配置有固定的甚至最大的传输功率。通过这种算法建立的链路经常遭受过多的同信道干扰,这极大地降低了MACNets的性能,因为链路的稳定性不仅高度依赖于节点移动性,还取决于同信道干扰。在本文中,我们研究了如何通过结合考虑自适应功率调整和移动性控制的路由来提高路由稳定​​性。我们首先提出一组功率调整策略,该策略动态设置认知节点的传输功率,以使可能受到干扰的链路持续时间尽可能长。然后,我们设计一种称为集成链路稳定性(ILS)的路由度量,以定量地测量链路稳定性。这种新颖的度量标准ILS同时考虑了节点移动性和信道干扰。最后,我们提出了一种针对多流和多跳MACNet的联合稳定路由和自适应功率调整(J-SRAPA)算法,目的是最大化网络吞吐量。在路由设置和数据传输期间,J-SRAPA以分布式方式动态调整传输功率,以减轻同信道干扰并相应地提高信道利用率。基于NS2的仿真结果表明,我们的J-SRAPA在网络吞吐量,端到端传输延迟和丢包率方面明显优于相关的路由算法。 MACNets拥有更高的信道干扰度经验,我们的J-SRAPA将为网络带来更多的改进。

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