首页> 外文会议>Distributed Computing Systems, 2009. ICDCS '09 >Joint Optimization of Spectrum Handoff Scheduling and Routing in Multi-hop Multi-radio Cognitive Networks
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Joint Optimization of Spectrum Handoff Scheduling and Routing in Multi-hop Multi-radio Cognitive Networks

机译:多跳多无线电认知网络中频谱切换调度与路由的联合优化

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Spectrum handoff causes performance degradation of the cognitive network when the primary user reclaims its right to access the licensed spectrum. In a multi-hop cognitive network, this problem becomes even worse since multiple links are involved. Spectrum handoff of multiple links seriously affects the network connectivity and routing. In this paper, we describe a cross-layer optimization approach to solve the spectrum handoff problem with joint consideration of spectrum handoff scheduling and routing. We propose a protocol, called Joint Spectrum Handoff Scheduling and Routing Protocol (JSHRP). This paper makes the following major contributions. First, the concept "spectrum handoff of single link" is extended to "spectrum handoff of multiple links", termed as "multi-link spectrum handoff". Second, we define the problem of coordinating the spectrum handoff of multiple links to minimize the total spectrum handoff latency under the constraint of the network connectivity. This problem is proven to be NP-hard, and we propose both centralized and distributed greedy algorithms to minimize the total latency of spectrum handoff for multiple links in a multi-hop cognitive network. Moreover, we jointly design the rerouting mechanism with spectrum handoff scheduling algorithm to improve the network throughput. Different from previous works in which rerouting is performed after spectrum handoff, our rerouting mechanism is executed before the spectrum handoff really happens. Simulation results show that JSHRP improves the network performance by 50% and the higher degree of interference the cognitive network experiences, the more improvement our solution will bring to the network.
机译:当主要用户收回其访问许可频谱的权利时,频谱切换会导致认知网络的性能下降。在多跳认知网络中,由于涉及多个链接,因此这个问题变得更加严重。多个链路的频谱切换会严重影响网络连接和路由。在本文中,我们结合频谱切换调度和路由的考虑,描述了一种跨层优化方法来解决频谱切换问题。我们提出了一种协议,称为联合频谱切换调度和路由协议(JSHRP)。本文做出以下主要贡献。首先,概念“单链路频谱切换”扩展到“多链路频谱切换”,称为“多链路频谱切换”。其次,我们定义了在网络连接性约束下协调多条链路的频谱切换以最小化总频谱切换等待时间的问题。事实证明,此问题是NP难题,我们提出了集中式和分布式贪婪算法,以最大程度地减少多跳认知网络中多个链路的频谱切换总延迟。此外,我们结合频谱切换调度算法共同设计了重路由机制,以提高网络吞吐量。与之前在频谱切换后执行重新路由的工作不同,我们的重新路由机制是在频谱切换真正发生之前执行的。仿真结果表明,JSHRP将网络性能提高了50%,并且认知网络所遭受的干扰程度越高,我们的解决方案将为网络带来更多的改进。

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