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Fairness and capacity analysis of opportunistic feedback protocol with proportional fair or maximum throughput scheduling

机译:具有比例公平或最大吞吐量调度的机会反馈协议的公平性和容量分析

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An opportunistic feedback protocol with maximum throughput (MT) scheduling has been proposed in the literature to achieve multiuser diversity for the downlink transmission of a wireless system, and its system capacity has been analyzed with the assumption that the received signal-to-noise ratios (SNRs) for the users are independent and identically distributed. In this paper, fairness and capacity performances of the opportunistic feedback protocol are analyzed for SNRs with independent but not necessarily identical distributions. In addition to MT scheduling, we also analyze the fairness and capacity performances for proportional fair (PF) scheduling. Compared with MT scheduling, numerical results demonstrate that the PF scheduling achieves strict fairness at the cost of about 10% system capacity loss over Rayleigh fading channels. Moreover, the feedback threshold and random access probability of the opportunistic feedback protocol are jointly optimized using a constrained gradient descent method to maximize system capacity.
机译:文献中提出了一种具有最大吞吐量(MT)调度的机会反馈协议,以实现无线系统下行链路传输的多用户分集,并在假设接收信噪比(用户的SNR是独立的,并且分布相同。在本文中,针对具有独立但不一定相同分布的SNR,分析了机会反馈协议的公平性和容量性能。除了MT调度外,我们还分析了比例公平(PF)调度的公平性和容量性能。与MT调度相比,数值结果表明PF调度在Rayleigh衰落信道上以大约10%的系统容量损失为代价实现了严格的公平性。此外,使用约束梯度下降方法联合优化机会反馈协议的反馈阈值和随机访问概率,以最大化系统容量。

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