ATM协议适应EMI/EMC环境

M. Jain, L. Vidyasagar, N.H. Rajashekhar, T. Ramamohan, T.N. Pranesh
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引用次数: 1

摘要

传统上,电信网络主要是基于各种专门用于呼叫控制的协议的电路交换,而计算机网络则是基于具有流量控制和分组路由的特定协议的分组交换。然而,在高性能网络客观发展的背景下,需要对传统演进协议的适用性进行评估。由于用户应用程序也将使用这种类型的网络基础设施,因此它们将使用现有协议的适当改编形式。这将确保与现有协议的兼容性,同时通过互连异构介质提供抗电磁干扰的免疫力。两端的通信系统可以划分为经典的7层OSI模型,事务在对等实体之间完成。互连介质中的电磁干扰直接影响物理层,但也间接影响所有上层。它导致物理层比特流中引入不同类型的错误模式。要分析这些错误模式,以量化它们对通信系统的影响。各种经典信道模型,即泊松、内曼·皮尔逊、帕累托、马尔可夫等,可以模拟互连介质的各种部分,从而给出物理层错误模式行为的相当好的想法。这些信息有助于选择合适的FEC和交织器,从而使另一端物理层外的残余误差很小。由于这个残余误差,上层仍然受到影响。本文重点研究了ATM层自适应的各种问题,以实现系统的整体电磁兼容。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ATM protocol adaptation for EMI/EMC environment
Traditionally telecommunication networks are primarily circuit switching based with variety of protocols developed specifically to have call control while computer networks are packet switching based with specific protocols for having traffic control and packet routing. However, in the context of evolving high performance network as objective the assessment of the suitability of conventionally evolved protocol needs to be done. As user applications also will use this type of network infrastructure hence suitably adapted form of existing protocols are to be used by them. This will ensure compatibility with existing protocols at the same time will provide immunity against electromagnetic interference by interconnecting heterogeneous media. The communication system at each end can be branched into classical 7 layers OSI model with transactions being done between peer entities. The electromagnetic interference in the interconnecting media directly affects the physical layer but indirectly all upper layers also. It causes different types of error patterns to be introduced in the physical layer bit streams. These error patterns are to be analyzed to quantify their effect on the communication system. Various classical channel models viz., Poisson, Neymann Pearson, Pareto, Markov etc. can emulate various segments of the interconnecting media thereby giving fairly good Idea of error pattern behavior at physical layer. This information is useful in selecting suitable FEC with interleaver so as to have very less residual error out of physical layer at other end. Still upper layers are affected because of this residual error. The paper focuses on the various issues concerning adaptation of ATM layers so that overall electromagnetic compatibility of the system can be achieved.
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