Operator Assisted Dynamic Spectrum Assignment with Dual Beacons

S. Mangold, A. Jarosch, C. Monney
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引用次数: 7

Abstract

Dynamic spectrum assignment refers to a new approach for radio regulation. Whereas today either command-and-control licensing, or alternatively unlicensed bands are used to coordinate the radio spectrum utilization, it is envisioned to coordinate the spectrum utilization in a more flexible way with the help of dynamic spectrum assignment. With this new approach, radio systems will share spectrum either horizontally with distributed spectrum allocation such as listen-before-talk and equal rights to access the radio spectrum, or vertically, where so-called primary radio systems have higher priority to access the radio spectrum than the so-called secondary radio systems. Horizontal and vertical spectrum sharing are often discussed in the context of opportunistic spectrum usage and cognitive (secondary) radio. To guarantee the spectrum access priorities when spectrum is shared, and to coordinate the vertical spectrum sharing between primary and cognitive radio systems, beaconing concepts are often proposed but criticized for their poor reliability in hidden station scenarios. In this paper, we introduce an improved beaconing concept that is based on operator assistance with two instead of one single beacon. Our analysis illustrates that our proposed dual beacon concept provides high flexibility and at the same time improves the reliability of spectrum coordination
双信标载波辅助动态频谱分配
动态频谱分配是一种新的无线电管理方法。鉴于目前要么使用命令控制许可,要么使用非许可频段来协调无线电频谱利用,设想在动态频谱分配的帮助下以更灵活的方式协调频谱利用。通过这种新方法,无线电系统将通过分布式频谱分配(如先听后讲和平等接入无线电频谱的权利)横向共享频谱,或者通过纵向共享频谱,即所谓的初级无线电系统比所谓的次级无线电系统具有更高的接入无线电频谱的优先级。在机会性频谱使用和认知(二次)无线电的背景下,经常讨论水平和垂直频谱共享。为了保证频谱共享时的频谱访问优先级,以及协调初级和认知无线电系统之间的垂直频谱共享,信标概念经常被提出,但在隐藏站场景下可靠性差。在本文中,我们介绍了一种改进的信标概念,该信标是基于操作员辅助的两个信标而不是一个信标。分析结果表明,本文提出的双信标概念具有较高的灵活性,同时提高了频谱协调的可靠性
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