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PSHO-HF-PM: An Efficient Proactive Spectrum Handover Mechanism in Cognitive Radio Networks

机译:PSHO-HF-PM:认知无线电网络中的一种有效的主动频谱切换机制

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摘要

In the paper, we develop an efficient proactive spectrum handover mechanism by using packet scheduling algorithm, called PSHO-HF-PM, to reduce unusable channel. It effectively integrates several mechanisms (hole filling and packet migration) to reduce the bandwidth fragment and support QoS. Its basic idea is in that a new packet is scheduled by migrating some packets to other channels if none of holes in any channels can accommodate it; otherwise repeating the above processes after random waiting time. Meanwhile under an effective data structure, such as the balanced binary search tree, its computational complexity will be O (2n log n) at most. In the proposed packet scheduling algorithm, packet migration plays a key role in the improvement of bandwidth efficiency and QoS. We also evaluate the performance of total service time for proactive spectrum handover mechanism based on a Preemptive Resume Priority M/G/1 queuing network model. The performance analysis and simulation results show that it performs much better than other proactive and reactive handover mechanism in collision rate, total service time, packet loss probability and bandwidth fragment ratio.
机译:在本文中,我们通过使用称为PSHO-HF-PM的分组调度算法来开发有效的主动频谱切换机制,以减少不可用的信道。它有效地集成了多种机制(漏洞填充和数据包迁移),以减少带宽碎片并支持QoS。它的基本思想是,如果任何通道中的孔都不能容纳新的数据包,则可以通过将某些数据包迁移到其他通道来进行调度。否则在随机等待时间后重复上述过程。同时,在有效的数据结构下,例如平衡二叉搜索树,其计算复杂度最多为O(2n log n)。在提出的分组调度算法中,分组迁移在提高带宽效率和QoS中起着关键作用。我们还基于抢占式恢复优先级M / G / 1排队网络模型评估了主动频谱切换机制的总服务时间性能。性能分析和仿真结果表明,该方法在冲突率,总服务时间,丢包率和带宽分片率等方面均优于其他主动和反应切换机制。

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