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首页> 外文期刊>Communications in Nonlinear Science and Numerical Simulation >Performance analysis of a distributed fixed-step power control algorithm via window concept in cellular mobile systems
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Performance analysis of a distributed fixed-step power control algorithm via window concept in cellular mobile systems

机译:蜂窝移动系统中基于窗口概念的分布式固定步长功率控制算法的性能分析

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摘要

In cellular mobile systems, the received carrier-to-interference ratio (CIR) can be maintained within the desirable range provided that the path gain remains approximately constant over a number of consecutive power control steps. However, when channels suffer short-term fading, it is not clear whether existing power control algorithms remain convergent. This paper proposes a distributed fixed-step power control algorithm with binary feedback via window concept for cellular mobile systems. The essence of the proposed algorithm is that the power control step size can be regulated by window size. The performance of the proposed scheme is analyzed in short-term fading channels. A sufficient condition for system stability is derived using a simple received C1R model and a power control window. It is shown herein that the bound of the received C1R of each user varies as a function of the target CIR, the size of the power control step and the link gain. The analysis and simulation results show that if the step size is properly set according to the window size, the proposed algorithm can achieve a small convergence region and a fast convergence rate.
机译:在蜂窝移动系统中,只要路径增益在许多连续的功率控制步骤中保持近似恒定,就可以将接收到的载波干扰比(CIR)保持在期望的范围内。但是,当信道遭受短期衰落时,尚不清楚现有的功率控制算法是否保持收敛。本文针对蜂窝移动系统提出了一种基于窗口概念的具有二进制反馈的分布式固定步长功率控制算法。该算法的本质是功率控制步长可以通过窗口大小来调节。在短期衰落信道中分析了该方案的性能。使用简单的接收到的C1R模型和功率控制窗口可以得出满足系统稳定性的充分条件。在此示出,每个用户的接收到的C1R的范围根据目标CIR,功率控制步长的大小和链路增益而变化。分析和仿真结果表明,如果根据窗口大小适当设置步长,则该算法可以实现较小的收敛区域和较快的收敛速度。

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