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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Cognitive Non-Orthogonal Multiple Access With Energy Harvesting: An Optimal Resource Allocation Approach
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Cognitive Non-Orthogonal Multiple Access With Energy Harvesting: An Optimal Resource Allocation Approach

机译:具有能量收集功能的认知非正交多路访问:一种最佳资源分配方法

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摘要

We consider a cognitive radio system, in which a secondary transmitter harvests energy from a primary transmitter's RF signal. The secondary transmitter, which provides decode-and-forward relaying service for the primary system, transmits its own data by using downlink non-orthogonal multiple access (NOMA). A time-switching protocol is used by the secondary transmitter to harvest energy and decode the primary transmitter's information. Our objective is to achieve maximal secondary throughput, by optimally selecting the time portion used for energy harvesting and the secondary transmitter's power allocation in NOMA transmission. In this paper, two optimization problems are formulated, in which the secondary receiver performs or does not perform successive interference cancellation (SIC), respectively. Although the two problems are nonconvex, we devise a method to transform the problems into equivalent problems under different cases. Then, we theoretically prove that the objective functions of the equivalent problems are quasiconcave, based on which we develop two-level bisection search algorithms to solve the equivalent problems. Interestingly, we show that performing SIC at the secondary receiver does not always guarantee a higher secondary throughput than the case without performing SIC. Computer simulation demonstrates that our algorithm performs better than an equal power allocation algorithm and an orthogonal multiple access algorithm.
机译:我们考虑一个认知无线电系统,其中辅助发射机从主要发射机的RF信号中收集能量。辅助发射机为主要系统提供解码和转发中继服务,它通过使用下行链路非正交多路访问(NOMA)来传输自己的数据。辅助发射机使用时间切换协议来收集能量并解码主发射机的信息。我们的目标是通过最佳地选择用于能量收集的时间部分和NOMA传输中辅助发射机的功率分配来实现最大的辅助吞吐量。本文提出了两个优化问题,其中次级接收机分别执行或不执行连续干扰消除(SIC)。尽管两个问题都不是凸的,但我们设计了一种方法来将问题转换为不同情况下的等价问题。然后,从理论上证明等价问题的目标函数是拟凹的,在此基础上,我们提出了两级二等分搜索算法来解决等价问题。有趣的是,我们表明,与不执行SIC的情况相比,在次要接收器上执行SIC并不总是保证更高的次要吞吐量。计算机仿真表明,我们的算法性能优于同等功率分配算法和正交多址访问算法。

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