A novel spectrum sensing scheduler algorithm for Cognitive Radio Networks

Sami H. O. Salih, Mamoun M. A. Suliman, A. Mohammed
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引用次数: 3

Abstract

Cognitive Radios' is recognized as a novel approach to improve the utilization of a precious wireless communication natural resource; the radio frequency spectrum. Historically, telecom regulators assigned fixed spectrum bands to the licensee wireless network operators, this spectrum management approach is guarantee interference free environment, except of some configurations faults or illegal usage. However, with the increasing demand for more bandwidth in the finite radio spectrum, the concept of secondary operator's was emerged, but with emphases to not influence licensed operators. Consequently, Cognitive Radio Networks (CRN) architecture enters the market as an intelligent solution to these issues, with concentration on the spectrum sensing procedures to achieve the regulatory constraint. The most successful sensing algorithms is those applying cooperation and scheduling to have better scanning information, however those algorithms are developed base on the primary network activities which is good in terms of reducing the expected interference, but it lay more computational loads on the CRN. In this paper, a novel sensing scheduler algorithm is proposed, the idea is to utilize the CRN by fairly distribute the sensing task among the sensors, then utilizing the radio spectrum shared with the primary networks.
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认知无线网络中一种新的频谱感知调度算法
认知无线电被认为是提高宝贵的无线通信自然资源利用率的一种新方法;无线电频谱无线电频谱从历史上看,电信监管机构将固定频段分配给被许可的无线网络运营商,这种频谱管理方法保证了除某些配置故障或非法使用外的无干扰环境。然而,随着在有限的无线电频谱中对更多带宽的需求不断增加,二级运营商的概念出现了,但强调不影响持牌运营商。因此,认知无线电网络(CRN)架构作为这些问题的智能解决方案进入市场,专注于频谱感知程序以实现监管约束。最成功的感知算法是利用协作和调度来获得更好的扫描信息,但这些算法是基于主要的网络活动来开发的,在减少预期干扰方面效果很好,但给CRN带来了更多的计算负担。本文提出了一种新的感知调度算法,其思想是通过在传感器之间公平分配感知任务,然后利用与主网络共享的无线电频谱来利用CRN。
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