Solving nonconvex power control problems in wireless networks: low SIR regime and distributed algorithms

C. Tan, D. Palomar, M. Chiang
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引用次数: 41

Abstract

In wireless cellular networks that are interference-limited, a variety of power control problems can be formulated as nonlinear optimization with a system-wide objective subject to many QoS constraints from individual users. Previous work have been done in the high SIR regime by solving these problems with nonlinear objectives and constraints as geometric programs. However, in the medium to low SIR regime, these problems cannot be transformed into tractable convex optimization problems. This paper makes two contributions: (1) In the low SIR regime, we propose a method with centralized computation to obtain the globally optimal solution by solving a series of geometric programs. (2) While efficient and robust algorithms have been extensively studied for centralized solutions of geometric programs, distributed algorithms have not been investigated before this paper. We present a systematic method of distributed algorithms for power control based on geometric programs in high SIR regime. These two contributions can be readily combined to distributively solve nonlinear power control problems in general SIR regime
解决无线网络中的非凸功率控制问题:低SIR状态和分布式算法
在受干扰限制的无线蜂窝网络中,各种功率控制问题可以被表述为具有系统范围目标的非线性优化,该目标受到来自单个用户的许多QoS约束。以前的工作是在高SIR条件下用非线性目标和约束作为几何规划来解决这些问题。然而,在中低SIR状态下,这些问题不能转化为可处理的凸优化问题。本文有两个贡献:(1)在低SIR域,我们提出了一种通过求解一系列几何规划来获得全局最优解的集中计算方法。(2)高效鲁棒的几何方案集中求解算法已经被广泛研究,而分布式算法在本文之前还没有被研究过。提出了一种基于几何规划的分布式功率控制系统方法。这两种贡献可以很容易地结合起来,以分布式地解决一般SIR状态下的非线性功率控制问题
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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