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Energy-Efficiency Fairness of Interference Multi-Relay Networks for Multi-User Communications

机译:用于多用户通信的干扰多继电器网络的能量效率公平

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We investigate a single-antenna multi-user multi-relay interference network, where multiple source nodes simultaneously communicate with their respective destination nodes via half-duplex decode-and-forward relays. To ensure fairness among users, we consider a power allocation strategy to maximize the worst-case energy efficiency (EE) of all users for a fixed relay assignment. The resulting optimization problem turns out to be non-convex. Different from those in the literature, our method here is an iterative algorithm where two geometric programs (GPs) are solved in each iteration, one producing an upper-bound to the solution of the original problem and the other providing a feasible lower-bound. Moreover, the upper-bound GP approaches the original problem asymptotically. Our algorithm also works for the problem arising in the non-interfering (orthogonal) transmission, which was previously solved as a fractional program. Numerical results reveal that non-orthogonal transmission outperforms orthogonal transmission in terms of the worst-case EE at low and medium signal-to-noise ratios.
机译:我们调查单天线多用户多相继电器干扰网络,其中多个源极节点通过半双工解码和前后继电器同时与其各自的目的地节点通信。为了确保用户之间的公平,我们考虑一个功率分配策略,以最大限度地提高所有用户的最坏情况的能效(EE),用于固定的中继分配。得到的优化问题结果是非凸。与文献中的那些不同,我们的方法是一种迭代算法,其中在每次迭代中解决了两个几何程序(GPS),一个产生原始问题的解决方案的上限,另一个是提供可行的下限。此外,上限GP接近渐近的原始问题。我们的算法还适用于在非干扰(正交)传输中产生的问题,该信号先前被解除为分数程序。数值结果表明,非正交传输在低和介质信噪比下的最坏情况ee方面的正交传输优于正交传输。

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