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基于OPNET的典型1394b总线拓扑结构建模与仿真
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V24;TP393

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国家自然科学基金资助项目(61202339);陕西省自然科学基金资助项目(2012JQ8034)


Modeling and Simulation of Typical 1394b Bus Topological Structure Based on OPNET
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    摘要:

    为评价IEEE1394b总线节点传输速率不匹配时的性能,研究和分析了典型stacktree拓扑结构的可靠性,提出在OPNET仿真环境中构建1394b总线异步通信模型的方法。采用层次化建模的理念设计节点模型进行仿真:应用层处理模块负责总线初始化、树标识过程和自标识过程,完成总线的配置;介质访问控制层实现异步仲裁和流入流出报文的处理。通过仿真,得到了1394b总线利用率、异步仲裁申请次数以及端对端延时等特性。实验结果表明:自然优先级比较高的节点可以率先获得总线使用权,同时节点间的ETE平均延时随拓扑距离的增大而增大。仿真结果考虑了节点传输速率不匹配时的情况,实现了1394b总线的拓扑配置和异步仲裁,扩展了OPNET模型库。

    Abstract:

    To evaluate the performance of 1394b bus being unmatchable at node transmission rate, the reliability of the typical stacktree topology is studied and analyzed, and an asynchronous communication model of 1394b bus is put forward in OPNET environment. First, hierarchical model of the node of 1394b is designed,and then, bus initialization, treeidentification and selfidentification are performed to complete the bus configuration by the processing module of application layer. Media access control layer is responsible for asynchronous arbitration and the process of inflow/outflow message. Finally, the utilization rate of the 1394b bus, the number of asynchronous arbitration and the endtoend timedelay characteristic can be achieved through simulation on OPNET. The experimental results show that the natural priority whose nodes are higher than the others can take the lead in using the bus, and at the same time, the ETE average delay is increased with the increase of topological distance increases between nodes.

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郑云飞,张登福,张立朝,李岳阳.基于OPNET的典型1394b总线拓扑结构建模与仿真[J].空军工程大学学报,2015,(5):28-31

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  • 在线发布日期: 2015-11-12
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