首页> 外文期刊>Computer Communications >A delay-aware spectrum handoff scheme for prioritized time-critical industrial applications with channel selection strategy
【24h】

A delay-aware spectrum handoff scheme for prioritized time-critical industrial applications with channel selection strategy

机译:一种具有优先级的关键频谱应用的延迟感知频谱切换方案,具有信道选择策略

获取原文
获取原文并翻译 | 示例
       

摘要

Cognitive radio has emerged as an enabling technology in the realization of a spectrum-efficient and delay sensitive industrial wireless communication where nodes are capable of responding in real-time. However, particularly for time-critical industrial applications, because of the link-varying channel capacity, the random arrival of a primary user (PU), and the significant delay caused by spectrum handoff (SH), it is challenging to realize a seamless real-time response which results in a quality of service (QoS) degradation. Therefore, the objectives of this paper is to increase spectrum utilization efficiency by allocating channel based on the priority of a user QoS requirements, to reduce SH delay, to minimize latency by preventing avoidable SHs, and to provide real-time response. To achieve an effective spectrum utilization, we proposed an integrated preemptiveon-preemptive priority scheme to allocate channels according to the priority of user QoS requirements. On the other hand, to avoid significant SH delays and substantial latency resulting from random PU arrival, a unified spectrum sensing technique was developed by integrating proactive sensing and the likelihood estimation technique to differentiate between a hidden and a co-existence PU, and to estimate the mean value of the busy and the idle periods of a channel respectively. Similarly, to prevent poor quality channel selection, a channel selection technique that jointly combines a reward system that uses metrics, e.g. interference range, and availability of a common channel to ranks a set of potential target channels, and a cost function that optimizes the probability of selecting the channel with the best characteristics as candidate channels for opportunistic transmission and for handoffs was developed. The simulation results show a significant performance gain of the delay-PritSHS in terms of number of SHs, Latency, as well as throughput for time-critical industrial applications in comparison to other schemes.
机译:认知无线电已成为实现频谱高效且对延迟敏感的工业无线通信的使能技术,其中节点能够实时响应。但是,特别是对于时间紧迫的工业应用,由于链路可变的信道容量,主要用户(PU)的随机到达以及频谱切换(SH)引起的显着延迟,实现无缝实时间响应,导致服务质量(QoS)下降。因此,本文的目的是通过根据用户QoS要求的优先级分配信道来提高频谱利用效率,以减少SH延迟,通过避免可避免的SH来最小化等待时间,并提供实时响应。为了实现有效的频谱利用,我们提出了一种集成的抢占/非抢占优先级方案,可以根据用户QoS要求的优先级分配信道。另一方面,为了避免由于随机PU到达而导致的显着SH延迟和大量等待时间,通过将前摄感测和似然估计技术相集成来开发一种统一的频谱感测技术,以区分隐藏PU和共存PU并进行估计信道繁忙时段和空闲时段的平均值。类似地,为了防止质量差的频道选择,频道选择技术结合了使用指标的奖励系统,例如开发了一种干扰范围,一个通用信道来对一组潜在目标信道进行排序的可用性,以及一个成本函数,该函数优化了选择具有最佳特性的信道作为机会传输和切换候选信道的可能性。仿真结果表明,与其他方案相比,就时间紧迫性工业应用而言,就SH数量,延迟和吞吐量而言,delay-PritSHS的性能显着提高。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号