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Analysis of distributed power control under constant and time-varying delays

机译:恒定和时变时滞下的分布式功率控制分析

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This work studies the distributed power control algorithm proposed in 1993 by Foschini-Miljanic, standardised for universal mobile telecommunication systems. Continuous and discrete time versions of this algorithm are analysed. First, the stability of the distributed power allocation schemes was studied, where sufficient conditions to guarantee stability and convergence to a desired quality of service were provided. In this study, the channel gains are assumed to be slowly time-varying or piece-wise constant. For closed-loop control, a proportional controller is then employed under integral action in order to achieve good tracking despite time-varying and unknown channel gains. Next, the effects of constant and time-varying time delays in the closed-loop structure are studied. Explicit stability regions for the control gains in the Foschini-Miljanic scheme are derived for both the continuous and discrete-time versions of the algorithm, under constant and time-varying delays. For time-varying scenario, the resulting stability regions do not impose limitations on the rate change of the time-varying profiles. A comprehensive evaluation using simulations is performed to validate the analytical derivations described in the paper.
机译:这项工作研究了由Foschini-Miljanic在1993年提出的针对通用移动电信系统标准化的分布式功率控制算法。分析了该算法的连续和离散时间版本。首先,研究了分布式功率分配方案的稳定性,其中提供了足够的条件来保证稳定性并收敛到所需的服务质量。在这项研究中,假设信道增益缓慢地随时间变化或分段恒定。对于闭环控制,尽管时变和未知的信道增益,然后在积分作用下采用比例控制器以实现良好的跟踪。接下来,研究了恒定和时变时滞对闭环结构的影响。对于连续和离散时间版本的算法,在恒定和随时间变化的延迟下,导出了Foschini-Miljanic方案中控制增益的显式稳定区域。对于时变方案,所得的稳定区域不会对时变轮廓的速率变化施加限制。使用模拟进行了全面评估,以验证本文所述的分析推导。

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