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Design and Analysis of Distributed Hopping-Based Channel Access in Multi-Channel Cognitive Radio Systems with Delay Constraints

机译:时滞约束的多信道认知无线电系统中基于跳频的分布式信道接入设计与分析

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摘要

To support delay-sensitive traffic in multi-channel cognitive radio systems, designing a channel access scheme faces two major challenges, namely, the long waiting time due to continuous channel occupancy of primary users (PUs) and the performance degradation due to transmission collisions among secondary users (SUs). To address both issues, we propose a two-phase channel access scheme, which consists of a distributed channel negotiation phase and a hopping-based channel access phase for each SU. Specifically, in its first phase, an SU attempts to negotiate a specific initial slot/channel differing from the ones chosen by other SUs. Then, in its second phase, the SU chooses a channel in each time slot in a hopping-based manner to transmit data, where the hopping starts from its initial channel and follows a common hopping sequence. Virtual channels are introduced to accommodate the situation when the number of SUs is larger than that of actual channels. The average maximal waiting time due to the channel negotiation phase is derived, and the effective capacity of the service process for each SU in the channel access phase is analyzed. Numerical results show that the proposed scheme can support a higher traffic load under the statistical delay constraint, as compared with fixed or random channel access schemes.
机译:为了在多信道认知无线电系统中支持对延迟敏感的业务,设计信道访问方案面临两个主要挑战,即主要用户(PU)连续占用信道导致等待时间长,以及之间传输冲突导致性能下降。次要用户(SU)。为了解决这两个问题,我们提出了一个两阶段的信道访问方案,该方案由每个SU的分布式信道协商阶段和基于跳变的信道访问阶段组成。具体地,在其第一阶段,SU尝试协商与其他SU所选择的时隙/信道不同的特定初始时隙/信道。然后,在第二阶段,SU以基于跳变的方式在每个时隙中选择一个信道来传输数据,其中,跳变从其初始信道开始,并遵循公共跳变序列。引入虚拟通道以适应SU数量大于实际通道数量的情况。推导由于信道协商阶段而导致的平均最大等待时间,并分析了信道接入阶段中每个SU的服务过程的有效容量。数值结果表明,与固定或随机信道接入方案相比,该方案在统计延迟约束下可以支持更高的业务负载。

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