Modeling and Tools for Network Simulation

Modeling and Tools for Network Simulation
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DOI:
10.1007/978-3-642-12331-3
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发表时间:
2010-09
期刊:
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影响因子:
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通讯作者:
Klaus Wehrle;Mesut Gnes;J. Gross
Klaus Wehrle;Mesut Gnes;J. Gross
中科院分区:
其他
文献类型:
--
作者:
Klaus Wehrle;Mesut Gnes;J. Gross

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通信系统设计和工程中的一个关键步骤是对其性能和行为的估计;特别是对于数学上复杂或高度动态的系统,网络仿真特别有用。这本书的重点是工具,建模原则和国家的最先进的模型离散事件为基础的网络模拟,标准方法应用于学术界和工业界的性能评估的新网络设计和架构。工具部分的重点是两个不同的模拟引擎:omnet++和ns-3,同时它还处理并行化、软件集成和硬件模拟等问题。处理网络仿真的建模和模型的部分分为无线部分和处理更高层的部分。无线部分涵盖了处理物理层、链路层和无线信道行为的所有基本建模原则。此外,还介绍了IEEE 802.11和IEEE 802.16等著名无线系统的详细模型。在更高层部分,除了点对点网络和网络拓扑的建模方法外,还介绍了网络层、传输层和应用层的经典建模方法。建模部分附带了一组不同仿真引擎的模型实现目录。这本书是针对计算机科学和电气工程的硕士生和博士生,以及来自学术界和工业界的研究人员和实践者,他们正在处理协议栈的任何一层的网络模拟。
A crucial step during the design and engineering of communication systems is the estimation of their performance and behavior; especially for mathematically complex or highly dynamic systems network simulation is particularly useful. This book focuses on tools, modeling principles and state-of-the art models for discrete-event based network simulations, the standard method applied today in academia and industry for performance evaluation of new network designs and architectures. The focus of the tools part is on two distinct simulations engines: OmNet++ and ns-3, while it also deals with issues like parallelization, software integration and hardware simulations. The parts dealing with modeling and models for network simulations are split into a wireless section and a section dealing with higher layers. The wireless section covers all essential modeling principles for dealing with physical layer, link layer and wireless channel behavior. In addition, detailed models for prominent wireless systems like IEEE 802.11 and IEEE 802.16 are presented. In the part on higher layers, classical modeling approaches for the network layer, the transport layer and the application layer are presented in addition to modeling approaches for peer-to-peer networks and topologies of networks. The modeling parts are accompanied with catalogues of model implementations for a large set of different simulation engines. The book is aimed at master students and PhD students of computer science and electrical engineering as well as at researchers and practitioners from academia and industry that are dealing with network simulation at any layer of the protocol stack.