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Non-Orthogonal Multiple Access for Unicast and Multicast D2D: Channel Assignment Power Allocation and Energy Efficiency

机译:单播和多播D2D非正交多次访问:信道分配功率分配和能效

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摘要

Non-orthogonal multiple access (NOMA) techniques have emerged in the past years as a solution to approximate the throughput performance of wireless communications systems to their theoretical capacity region. We consider in this paper an optimization-based model for multicast device-to-device (MD2D) communications where the channels are not orthogonal and may be (partially or fully) shared among the transmitters in each cluster. This setting leads naturally to the introduction of NOMA transmitters and receivers who use successive interference cancellation (SIC) to separate the superposed signals. To analyze the role of NOMA in MD2D, its performance impact, potential performance gains and possible shortcomings, we formulate a model that includes SIC operations in the decoders, so that higher rates can be attained when several sources transmit on the same channel(s). We also investigate the energy efficiency of the network (global and max-min) through a dynamic power control algorithm and present a centralized and a semi-distributed solution to these optimization problems. Through numerical simulations, we show that NOMA is able to improve both the sum-rate and the max-min rate of a MD2D network even from a small degree of resource sharing. Furthermore, these gains also improve the global energy efficiency on the network, but not always the max-min energy efficiency of the devices.
机译:在过去几年中出现了非正交多通道(NOMA)技术作为近似近似无线通信系统对其理论能力区域的吞吐量性能的解决方案。我们考虑本文,用于多播设备到设备(MD2D)通信的基于优化的模型,其中信道不是正交的,并且可以是(部分或完全)在每个簇中的发射机之间共享。此设置自然导致引入使用连续干扰消除(SIC)来分离叠加信号的NOMA发射器和接收器。要分析NOMA在MD2D中的作用,其性能影响,潜在的性能提升和可能的缺点,我们制定了一个模型,包括在解码器中的SIC操作,当多个源在同一频道上传输时,可以获得更高的速率。我们还通过动态功率控制算法研究了网络(全局和MAX-MIN)的能效,并对这些优化问题提供了集中式和半分布式解决方案。通过数值模拟,我们表明,即使从少量资源共享,NOMA也能够提高MD2D网络的总和和最大率。此外,这些收益还提高了网络上的全球能源效率,但并不总是设备的最大值能量效率。

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