An Improved Proactive Handoff Scheme (IPHS) for Target Channel Selection in Cognitive Radio Network

J. A. Orokpo, A. Tekanyi, H. A. Abdulkareem, E. Agbon
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Abstract

In recent years, one of the challenges of spectrum allocation and utilization was fixed spectrum allocation which lead to spectrum scarcity and underutilization. In an attempt to address this challenge, Cognitive Radio Network (CRN) which uses Dynamic Spectrum Access (DSA) was proposed. It allows licensed users’ or Primary Users’ (PUs) spectrum to be shared with unlicensed users or Secondary Users (SUs). DSA could be achieved by developing an effective channel selection scheme for SUs spectrum handoff. Selecting an appropriate channel for the SUs to continue their interrupted transmission is a challenging task. Several researchers have used different techniques such as Novel Proactive Handoff Scheme (NPHS) to enhance accurate channel selection for spectrum handoff by considering only channel occupancy. These techniques still suffer some set back like high number of spectrum handoff and delay in channel selection. This paper presents an Improved Proactive Spectrum Handoff Scheme (IPHS) for accurate target channel selection in CRN. The improvement is achieved by considering channel signal quality in addition to channel occupancy as a criteria for the selection of a backup channel for spectrum handoff. Simulation results showed that the IPHS reduced the number of spectrum handoff by 15% and 26% as compared to NPHS and IEEE 802.11 scheme respectively. The average delay was also reduced by 13% and 35% as compared to NPHS and IEEE 802.11 scheme respectively.
一种用于认知无线电网络中目标信道选择的改进主动切换方案(IPHS)
近年来,频谱分配和利用面临的挑战之一是频谱的固定分配,这导致了频谱的稀缺和未充分利用。为了解决这一挑战,采用动态频谱接入(DSA)的认知无线网络(CRN)被提出。它允许授权用户或Primary users (Primary users)的频谱与未授权用户或Secondary users (Secondary users)的频谱共享。DSA可以通过开发一种有效的SUs频谱切换信道选择方案来实现。为单元选择合适的通道以继续其中断的传输是一项具有挑战性的任务。为了提高频谱切换时的信道选择精度,研究人员采用了新型主动切换方案(NPHS)等技术,仅考虑信道占用。这些技术仍然存在频谱切换次数多、信道选择延迟等缺点。提出了一种改进的主动频谱切换方案(IPHS),用于CRN中精确的目标信道选择。改进是通过考虑信道信号质量以及信道占用作为选择用于频谱切换的备份信道的标准来实现的。仿真结果表明,与NPHS和IEEE 802.11方案相比,该方案的频谱切换次数分别减少了15%和26%。与NPHS和IEEE 802.11方案相比,平均延迟也分别减少了13%和35%。
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20 weeks
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