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Multichannel-Sensing Scheduling and Transmission-Energy Optimizing in Cognitive Radio Networks with Energy Harvesting

机译:具有能量收集功能的认知无线电网络中的多通道感知调度和传输能量优化

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摘要

This paper considers cognitive radio networks (CRNs) utilizing multiple time-slotted primary channels in which cognitive users (CUs) are powered by energy harvesters. The CUs are under the consideration that hardware constraints on radio devices only allow them to sense and transmit on one channel at a time. For a scenario where the arrival of harvested energy packets and the battery capacity are finite, we propose a scheme to optimize (i) the channel-sensing schedule (consisting of finding the optimal action (silent or active) and sensing order of channels) and (ii) the optimal transmission energy set corresponding to the channels in the sensing order for the operation of the CU in order to maximize the expected throughput of the CRN over multiple time slots. Frequency-switching delay, energy-switching cost, correlation in spectrum occupancy across time and frequency and errors in spectrum sensing are also considered in this work. The performance of the proposed scheme is evaluated via simulation. The simulation results show that the throughput of the proposed scheme is greatly improved, in comparison to related schemes in the literature. The collision ratio on the primary channels is also investigated.
机译:本文考虑了利用多个时隙主要信道的认知无线电网络(CRN),其中认知用户(CU)由能量收集器提供动力。 CU的考虑因素是,无线电设备上的硬件限制仅允许它们一次在一个信道上进行感测和发送。对于采集的能量包的到达和电池容量有限的情况,我们提出了一种方案来优化(i)信道感知调度(由寻找信道的最优动作(静默或活动)和感知信道顺序组成)和(ii)以用于CU的操作的感测顺序对应于信道的最优传输能量集,以最大化在多个时隙上的CRN的预期吞吐量。这项工作还考虑了频率切换延迟,能量转换成本,时间和频率上频谱占用的相关性以及频谱感测中的误差。通过仿真评估了所提出方案的性能。仿真结果表明,与文献中的相关方案相比,该方案的吞吐量有了很大的提高。还研究了主通道上的碰撞率。

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