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Research on performance of ethernet interface in network centric warfare

机译:以网络为中心的以太网接口性能研究

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The concept of network centric warfare (NCW) and its character, high requirement of real-time synchronization are introduced. The distributed equal-node network architecture in NCW is presented. Based on theoretical analysis on ethernet interface performance, this paper presents that forwarding latency between ethernet interface devices is a key influence factor of real-time synchronization in NCW. Ethernet fundamental is briefly introduced. The model between a switch under test (SUT) and a smartbits card is presented and used for two interconnecting switches in NCW. On condition that ignoring the latency of connecting fiber or twisted pairs and processing latency of the smartbits test system, this paper presents that clock frequency tolerance (CFT) between a SUT and a smartbits card is a leading influence factor of forwarding latency of an ethernet switch. The formulae to calculate internal forwarding latency and forwarding latency caused by its CFT are deduced. Theoretical calculation on forwarding latency of an ethernet switch based on the given CFT and test time is implemented. Experimental study on primary forwarding latency and secondary forwarding latency is implemented and forwarding latency between the SUT and the smartbits card is measured, thus testifying the accuracy of the above theoretical analysis that the CFT is a key influence factor of forwarding latency. The measures to satisfy the needs of forwarding latency in NCW are presented.
机译:介绍了网络中心战(NCW)的概念,特点,对实时同步的高要求。提出了NCW中的分布式等节点网络体系结构。基于对以太网接口性能的理论分析,提出以太网接口设备之间的转发延迟是影响NCW实时同步的关键因素。简要介绍了以太网基础。给出了被测交换机(SUT)和smartbits卡之间的模型,并将其用于NCW中的两个互连交换机。在不考虑连接光纤或双绞线的延迟以及smartbits测试系统的处理延迟的情况下,本文提出SUT与smartbits卡之间的时钟频率容限(CFT)是以太网交换机转发延迟的主要影响因素。 。推导了计算内部转发等待时间和由其CFT引起的转发等待时间的公式。实现了基于给定的CFT和测试时间的以太网交换机转发等待时间的理论计算。通过进行一次转发时延和二次转发时延的实验研究,并测量了SUT和smartbits卡之间的转发时延,从而证明了上述理论分析的准确性,即CFT是转发时延的关键影响因素。提出了满足NCW转发延迟需求的措施。

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