{"title":"Military Interfaces for a Burst Switch","authors":"C. Sidlo","doi":"10.1109/MILCOM.1986.4805871","DOIUrl":null,"url":null,"abstract":"For experimental field trials of the burst switching concept being developed at GTE Laboratories, both commercial and military interfaces are planned. This paper illustrates the generality of burst switch hardware and software architectures that makes interfacing to two complex military terminations--the SB-3614 Tactical Switchboard and the Digital Nonsecure Voice Terminal (DNVT)--nearly as straightforward as to interfacing an ordinary voice telephone. Brief descriptions of the SB-3614 and the DNVT are given. The elements of distributed control in burst switch networks are described as principal factors in the architecture. The same basic port hardware configuration, now in discrete logic for experimental demonstration, is used for all port types, with only the electrical interfaces differing among them. Port software is written in a switching-oriented language and employs universal command messages for interprocessor communications. Partitioning of the port software into processes common to all interfaces and those unique to a specific interface simplifies software implementation. The architectural approach makes it possible to specify and incorporate future interfaces with relative ease.","PeriodicalId":126184,"journal":{"name":"MILCOM 1986 - IEEE Military Communications Conference: Communications-Computers: Teamed for the 90's","volume":"58 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"1986-10-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"MILCOM 1986 - IEEE Military Communications Conference: Communications-Computers: Teamed for the 90's","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1109/MILCOM.1986.4805871","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
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Abstract

For experimental field trials of the burst switching concept being developed at GTE Laboratories, both commercial and military interfaces are planned. This paper illustrates the generality of burst switch hardware and software architectures that makes interfacing to two complex military terminations--the SB-3614 Tactical Switchboard and the Digital Nonsecure Voice Terminal (DNVT)--nearly as straightforward as to interfacing an ordinary voice telephone. Brief descriptions of the SB-3614 and the DNVT are given. The elements of distributed control in burst switch networks are described as principal factors in the architecture. The same basic port hardware configuration, now in discrete logic for experimental demonstration, is used for all port types, with only the electrical interfaces differing among them. Port software is written in a switching-oriented language and employs universal command messages for interprocessor communications. Partitioning of the port software into processes common to all interfaces and those unique to a specific interface simplifies software implementation. The architectural approach makes it possible to specify and incorporate future interfaces with relative ease.
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突发开关的军用接口
对于正在GTE实验室开发的突发开关概念的实验现场试验,计划使用商业和军事接口。本文说明了突发交换机硬件和软件架构的通用性,使得与两个复杂的军事终端(SB-3614战术交换机和数字非安全语音终端(DNVT))的接口几乎与与普通语音电话的接口一样简单。简要介绍了SB-3614和DNVT。将突发交换网络中的分布式控制要素描述为体系结构中的主要因素。相同的基本端口硬件配置,现在以离散逻辑进行实验演示,用于所有端口类型,其中只有电接口不同。端口软件是用面向交换的语言编写的,并采用通用命令消息进行处理器间通信。将端口软件划分为所有接口通用的进程和特定接口特有的进程,简化了软件实现。体系结构方法使得相对容易地指定和合并未来的接口成为可能。
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