Geometric Programming for Communication Systems

IF 2 Q3 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS Foundations and Trends in Communications and Information Theory Pub Date : 2005-06-06 DOI:10.1561/0100000005
M. Chiang
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引用次数: 476

Abstract

Geometric Programming (GP) is a class of nonlinear optimization with many useful theoretical and computational properties. Over the last few years, GP has been used to solve a variety of problems in the analysis and design of communication systems in several 'layers' in the communication network architecture, including information theory problems, signal processing algorithms, basic queuing system optimization, many network resource allocation problems such as power control and congestion control, and cross-layer design. We also start to understand why, in addition to how, GP can be applied to a surprisingly wide range of problems in communication systems. These applications have in turn spurred new research activities on GP, especially generalizations of GP formulations and development of distributed algorithms to solve GP in a network. This text provides both an in-depth tutorial on the theory, algorithms, and modeling methods of GP, and a comprehensive survey on the applications of GP to the study of communication systems.
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通信系统的几何规划
几何规划(GP)是一类非线性优化问题,具有许多有用的理论和计算性质。在过去的几年中,GP被用于解决通信网络体系结构中若干“层”通信系统的分析和设计中的各种问题,包括信息论问题、信号处理算法、基本排队系统优化、功率控制和拥塞控制等许多网络资源分配问题以及跨层设计。我们也开始理解为什么GP可以应用于通信系统中令人惊讶的广泛问题。这些应用反过来又刺激了GP的新研究活动,特别是GP公式的推广和分布式算法的发展,以解决网络中的GP。本文提供了对GP的理论,算法和建模方法的深入教程,并对GP在通信系统研究中的应用进行了全面调查。
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来源期刊
Foundations and Trends in Communications and Information Theory
Foundations and Trends in Communications and Information Theory COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS-
CiteScore
7.90
自引率
0.00%
发文量
6
期刊介绍: Foundations and Trends® in Communications and Information Theory publishes survey and tutorial articles in the following topics: - Coded modulation - Coding theory and practice - Communication complexity - Communication system design - Cryptology and data security - Data compression - Data networks - Demodulation and Equalization - Denoising - Detection and estimation - Information theory and statistics - Information theory and computer science - Joint source/channel coding - Modulation and signal design - Multiuser detection - Multiuser information theory
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