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首页> 外文期刊>IEEE transactions on wireless communications >Cooperative Asynchronous Non-Orthogonal Multiple Access With Power Minimization Under QoS Constraints
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Cooperative Asynchronous Non-Orthogonal Multiple Access With Power Minimization Under QoS Constraints

机译:QoS约束下功率最小的协作式异步非正交多路访问

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Recent studies have demonstrated the superiority of non-orthogonal multiple access (NOMA) over orthogonal multiple access (OMA) in cooperative communication networks. In this paper, we propose a novel half-duplex cooperative asynchronous NOMA (C-ANOMA) framework with user relaying, where a timing mismatch is intentionally added in the broadcast signal. We derive the expressions for the throughputs of the strong user (acts as relay) which employs the block-wise successive interference cancellation (SIC) and the weak user which combines the symbol-asynchronous signal with the interference-free signal. We analytically prove that in the C-ANOMA systems with a sufficiently large block length, the strong user attains the same throughput to decode its own message while both users can achieve a higher throughput to decode the weak user & x2019;s message compared with those in the cooperative NOMA (C-NOMA) systems. Besides, we obtain the optimal timing mismatch when the block length goes to infinity. Furthermore, to exploit the trade-off between the power consumption of the base station and that of the relay user, we solve a weighted sum power minimization problem under quality of services (QoS) constraints. Numerical results show that the C-ANOMA system can consume less power compared with the C-NOMA system to satisfy the same QoS requirements.
机译:最近的研究表明,在协作通信网络中,非正交多址访问(NOMA)优于正交多址访问(OMA)。在本文中,我们提出了一种具有用户中继功能的新型半双工协作异步NOMA(C-ANOMA)框架,其中在广播信号中故意添加了时序不匹配。我们推导了采用块状连续干扰消除(SIC)的强用户(充当中继)和结合符号异步信号和无干扰信号的弱用户的吞吐量的表达式。我们通过分析证明,在块长度足够大的C-ANOMA系统中,与那些弱用户和弱用户相比,强用户可以获得相同的吞吐量来解码自己的消息,而两个用户都可以获得更高的吞吐量来解码弱用户和x2019; s消息。在合作NOMA(C-NOMA)系统中。此外,当块长度达到无穷大时,我们可以获得最佳时序失配。此外,为了利用基站和中继用户的功耗之间的权衡,我们解决了服务质量(QoS)约束下的加权总功率最小化问题。数值结果表明,与满足相同QoS要求的C-NOMA系统相比,C-ANOMA系统消耗的功率更少。

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