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A Joint Three Compensation round based scheduling Algorithm and a dynamic resource allocation procedure for OFDMA Cognitive systems

机译:OFDMA认知系统的基于三补偿轮的调度算法和动态资源分配过程

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In this paper we propose a three compensation round based scheduling algorithm and a dynamic resource allocation procedure for OFDMA based cognitive radio. The main contribution of the proposed scheduling scheme is a high interaction with the external environment, to insure on one hand fairness guarantee between the different real time traffic queues and on the other hand, an enhancement in the Quality of Service level offered by the cognitive network. The contribution of our proposed resource allocation algorithm is to allow a maximum number of cognitive users to use the available spectrum holes and to secure cognitive transmissions. The general contribution of the joint proposed scheduling and resource allocation algorithm is to satisfy the Quality of Service requirements of cognitive users and to respect primary user priority. The resource allocation scheme is implemented in a distributed manner and confirmed by the High Capabilities node during the Conflict resolution procedure. The scheduling procedure is composed by a normal scheduling period and three on-demand compensation rounds based on two different virtual start tags. Our results show that the proposed mechanisms can achieve high overall throughput, high fairness degree, and low over all packet loss percentage.
机译:在本文中,我们提出了一种基于三补偿回合的调度算法和基于OFDMA的认知无线电的动态资源分配过程。所提出的调度方案的主要贡献是与外部环境的高度交互,一方面确保了不同实时流量队列之间的公平性保证,另一方面又提高了认知网络所提供的服务质量水平。我们提出的资源分配算法的作用是允许最大数量的认知用户使用可用的频谱漏洞并确保认知传输。联合提出的调度和资源分配算法的总体贡献是满足认知用户的服务质量要求并尊重主要用户优先级。资源分配方案以分布式方式实现,并在冲突解决过程中由High Capabilities节点确认。调度过程由正常调度周期和基于两个不同虚拟起始标签的三个按需补偿回合组成。我们的结果表明,所提出的机制可以实现较高的整体吞吐量,较高的公平度以及较低的所有丢包率。

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