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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Energy-Efficiency-Based Power Allocation Scheme in Multi-user Single-DF-Relay Cognitive Networks
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Energy-Efficiency-Based Power Allocation Scheme in Multi-user Single-DF-Relay Cognitive Networks

机译:基于节能的多用户单DF继电器认知网络中的功率分配方案

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摘要

Due to the enhancement in both spectral efficiency and energy efficiency, cognitive radio (CR) being combined with relay cooperation technique is deemed as a promising way to realize green-broadband communication in the fifth generation (5G) networks. In this paper, for such CR-relay networks operating in underlay mode, when multiple secondary cognitive users (SUs) share a common cognitive relay in decode-and-forward manner to complete their physical transmissions, system power consumption is investigated. For the scenarios where the co-channel interference to primary users and the peak transmit power of SUs and cognitive relay are constrained, the problem of power allocation in CR-relay network is formulated to minimizing sum-system-consumption. Then, based on the principle that power-consumption minimization is equivalent to energy-efficiency maximization, a novel power allocation scheme is proposed. Further numerical simulation is used to verify the optimality of the proposed power allocation scheme.
机译:由于频谱效率和能效的增强,与中继协作技术相结合的认知无线电(CR)被认为是实现第五代(5G)网络中的绿色宽带通信的有希望的方式。在本文中,对于在底层模式下运行的这种CR继电器网络,当多个二级认知用户(SUS)以解码和前进方式共享公共认知继电器来完成其物理传输时,研究了系统功耗。对于对主用户的共同信道干扰和SUS和认知继电器的峰值发射功率受到约束的情况,配制了CR继电器网络中功率分配问题以最小化SUM系统消耗。然后,基于功率消耗最小化相当于能量效率最大化的原理,提出了一种新的功率分配方案。进一步的数值模拟用于验证所提出的功率分配方案的最优性。

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