| 书目名称 | Interference Calculus |
| 副标题 | A General Framework |
| 编辑 | Martin Schubert,Holger Boche |
| 视频video | http://file.papertrans.cn/471/470983/470983.mp4 |
| 概述 | Presents a mathematical framework for modeling and optimizing interference-coupled multiuser systems.Relevant for researchers from many disciplines.Proofs and detailed calculations should help the rea |
| 丛书名称 | Foundations in Signal Processing, Communications and Networking |
| 图书封面 |  |
| 描述 | This book develops a mathematical framework for modeling and optimizing interference-coupled multiuser systems. At the core of this framework is the concept of general interference functions, which provides a simple means of characterizing interdependencies between users. The entire analysis builds on the two core axioms scale-invariance and monotonicity. .The proposed network calculus has its roots in power control theory and wireless communications. It adds theoretical tools for analyzing the typical behavior of interference-coupled networks. In this way it complements existing game-theoretic approaches. .The framework should also be viewed in conjunction with optimization theory. There is a fruitful interplay between the theory of interference functions and convex optimization theory. By jointly exploiting the properties of interference functions, it is possible to design algorithms that outperform general-purpose techniques that only exploit convexity. .The title “network calculus” refers to the fact that the theory of interference functions constitutes a generic theoretical framework for the analysis of interference coupled systems. Certain operations within the framework are |
| 出版日期 | Book 2012 |
| 关键词 | Nash bargaining; comprehensive sets; convex optimization theory; interference function; interference-cou |
| 版次 | 1 |
| doi | https://doi.org/10.1007/978-3-642-24621-0 |
| isbn_softcover | 978-3-642-43393-1 |
| isbn_ebook | 978-3-642-24621-0Series ISSN 1863-8538 Series E-ISSN 1863-8546 |
| issn_series | 1863-8538 |
| copyright | Springer-Verlag GmbH Berlin Heidelberg 2012 |