Adaptive mode selection in cognitive buffer-aided full-duplex relay networks with imperfect self-interference cancellation for power and delay limited cases

Mostafa Darabi, Nima Namvar, B. Maham, W. Saad, M. Debbah
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引用次数: 7

Abstract

In this paper, a cognitive radio network is considered in which the secondary network (SN) consists of a source, a buffer-aided full-duplex decode-and-forward relay, and a destination, underlaid over a primary network (PN). An imperfect self-interference (SI) cancellation is assumed at the secondary relay (SR), such that the SI power is proportional to the transmit power of the SR. For the SN with limited power expenditure, a novel joint mode selection and power allocation policy is proposed to maximize the secondary throughput under the constraints of secondary power consumption and a limited average induced interference power at the primary destination. For delay sensitive SN applications, a statistical delay constraint is imposed in which the queue length at the SR can only exceed a specified threshold with a limited probability. In the two proposed policies, the SN decides optimally when to operate in half duplex mode and/or in full duplex mode, and be silent. To avoid data loss in the SN, buffer is used at the SR for data storage. Simulation results show that, for a given interference threshold and statistical delay constraint, the proposed policy outperforms the non-buffer full-duplex, buffer-aided half-duplex, and non-buffer half-duplex policies in terms of the average secondary throughput, the average secondary delay, and the secondary power expenditure.
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功率和延迟有限情况下认知缓冲辅助全双工中继网络的自适应模式选择
在本文中,考虑了一个认知无线网络,其中辅助网络(SN)由一个源,一个缓冲器辅助的全双工解码转发中继和一个目标组成,底层在主网络(PN)上。假设二次中继(SR)存在不完全自干扰消除,即自干扰功率与SR的发射功率成正比。针对功率消耗有限的二次中继,提出了一种新的联合模式选择和功率分配策略,在二次功耗和主目的地平均诱导干扰功率有限的约束下,最大限度地提高二次吞吐量。对于延迟敏感的SN应用,施加了统计延迟约束,SR处的队列长度只能以有限的概率超过指定的阈值。在这两种策略中,SN最优地决定何时在半双工模式和/或全双工模式下工作,并保持沉默。为了避免SN中的数据丢失,在SR中使用缓冲区进行数据存储。仿真结果表明,在给定干扰阈值和统计延迟约束下,该策略在平均二次吞吐量、平均二次延迟和二次功耗方面优于非缓冲全双工、缓冲辅助半双工和非缓冲半双工策略。
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