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Distributed Shared Spectrum Techniques for Cognitive Wireless Radio Networks

机译:用于认知无线无线电网络的分布式共享频谱技术

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Cognitive radios (CR) offer the promise of being a disruptive technology innovation that will enable the future wireless world. CR techniques are being applied in many different communications systems. They promise to improve the utilization of radio frequencies making room for new and additional commercial data, emergency, and military communications services. Today's wireless networks are characterized by a fixed spectrum assignment policy. However, a large portion of the assigned spectrum is used sporadically and geographical variations in the utilization of assigned spectrum ranges from 25% to 75% with a high discrepancy in time. The limited available spectrum and the inadequacy in the spectrum usage necessitate a new communication standard to utilize the existing wireless spectrum opportunistically. This innovative networking standard is referred to as NeXt Generation (xG) Networks as well as Dynamic Spectrum Access (DSA) and cognitive radio networks(CRN). Cognitive Radio Networks are composed of wireless devices able to opportunistically access the shared radio resource. The core of such networking paradigm is the capability of cognitive radio to monitor the spectrum occupation to exploit spectrum holes for transmission. Spectrum sensing refers to the technique used by cognitive radios to scan the spectrum, in addition, the xG network roles such as spectrum management, spectrum mobility and spectrum sharing are explained in detail. The influence of these functions on the performance of the upper layer protocols such as routing and transport are investigated and open research issues in these areas are also summarized. In the end, challenges for the security, cross-layer design issues and future scope of of xG Network are concluded.
机译:认知无线电(CR)提供的是一个突破性技术创新,使未来的无线世界的承诺。在许多不同的通信系统中应用CR技术。他们承诺,以提高无线电频率腾出新的和额外的商业数据,应急和军事通信服务的利用率。今天的无线网络是由一个固定的频谱分配策略特点。但是,所分配的频谱的大部分被用于零星和地理变化分配频谱范围的利用率为25%至75%的在时间上的差异高。有限的可用频谱,并在频谱使用不足必要的新的通信标准,机会性地利用现有的无线频谱。这种创新的网络标准被称为下一代(XG)网络以及动态频谱接入(DSA)和认知无线电网络(CRN)。认知无线电网络是由能够伺机访问共享无线资源的无线设备。这种联网范式的核心是认知无线电来监测频谱占用利用用于传输的频谱空洞的能力。频谱感测指的是用于通过认知无线电扫描光谱,此外的技术中,XG网络角色,如频谱管理,频谱迁移率和频谱共享进行详细说明。这些功能上的上层协议,如路由和传输性能的影响进行了研究,并在这些领域的开放性的研究问题也总结。最后,对于安全方面的挑战,跨层设计问题和XG未来网络的范围进行了总结。

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