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Multi-channel sensing and resource allocation in energy constrained cognitive radio networks

机译:能量受限的认知无线电网络中的多信道感知和资源分配

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We consider a cognitive radio network in a multi-channel licensed environment. Secondary user transmits in a channel if the channel is sensed to be vacant. This results in a tradeoff between sensing time and transmission time. When secondary users are energy constrained, energy available for transmission is less if more energy is used in sensing. This gives rise to an energy tradeoff. For multiple primary channels, secondary users must decide appropriate sensing time and transmission power in each channel to maximize average aggregate-bit throughput in each frame duration while ensuring quality-of-service of primary users. Considering time and energy as limited resources, we formulate this problem as a resource allocation problem. Initially a single secondary user scenario is considered and solution is obtained using decomposition and alternating optimization techniques. Later we extend the analysis for the case of multiple secondary users. Simulation results are presented to study effect of channel occupancy, fading and energy availability on performance of proposed method.
机译:我们考虑在多通道许可环境中使用认知无线电网络。如果感知到该信道空闲,则次要用户在该信道中进行发送。这导致在感测时间和传输时间之间进行折衷。当次级用户受到能量限制时,如果在传感中使用更多的能量,则可用于传输的能量会减少。这引起能量折衷。对于多个主要信道,次要用户必须确定每个信道中的适当检测时间和传输功率,以在确保主要用户的服务质量的同时,最大化每个帧持续时间内的平均聚合比特吞吐量。将时间和精力视为有限的资源,我们将此问题公式化为资源分配问题。最初,考虑单个辅助用户方案,并使用分解和交替优化技术获得解决方案。稍后,我们将分析扩展到多个二级用户的情况。仿真结果表明了信道占用,衰落和能量可用性对所提方法性能的影响。

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