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A switched system model for stability analysis of distributed power control algorithms for cellular communications

机译:用于蜂窝通信的分布式功率控制算法稳定性分析的交换系统模型

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We examine the well known distributed power control (DPC) algorithm proposed by Foschini and Miljanic and show via simulations that it may fail to converge in the presence of time-varying channels and handoff, even when the feasibility of the power control problem is maintained at all times. Simulation results also demonstrate that the percentage of instability is a function of the variance of shadow fading, interference and the target signal to interference plus noise ratio. In order to better explain these observations and provide a systematic framework to study the stability of distributed power control algorithms in general, we present the problem in the context of switched systems, which can capture the time variations of the channel and handoffs. This formulation leads to interesting stability problems, which we address using common quadratic Lyapunov functions and M-matrices.
机译:我们研究了Foschini和Miljanic提出的众所周知的分布式功率控制(DPC)算法,并通过模拟显示它可能无法在存在时变通道和切换的情况下收敛,即使在维持问题的可行性处于维持器时一直。仿真结果还表明,不稳定性的百分比是阴影衰落,干扰和目标信号对干扰加噪声比的差异的函数。为了更好地解释这些观察,并提供系统框架,以研究分布式功率控制算法的稳定性,我们在交换系统的上下文中提出了问题,这可以捕获信道和切换的时间变化。该配方导致有趣的稳定性问题,我们使用常见的二次Lyapunov函数和M矩阵地址。

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