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Automated Measurement and Control Systems for Spacecrafts and Missile Launches in the USSR: The Pioneering Role of the Elite Engineering Corps of the Leningrad Polytechnic Institute

机译:苏联航天器和导弹发射的自动测量和控制系统:列宁格勒理工学院精英工程团的先锋作用

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The paper highlights certain important pages of computer science history that are virtually unknown not only to the general scientific community both in Russia and abroad, but to many computer and telecommunications specialists as well. Attention is brought to achievements of the team of scientists and engineers at the Leningrad Polytechnic Institute (LPI) attained in development of real-time computerized systems designed in mid-90th to support launching missiles and putting artificial Earth satellites in orbit. Discussed are problems related to early ballistic trajectories parameters' measurement and processing, which necessitated innovative design and construction of specialized digital computers of the Quartz and Temp series. Described is the subsequent invention of unique hardware that was based on original diodless ferrite logic elements (ferrite-ferrite logic) en mass assembled and packaged into compact shielded construction modules ("plates"). The variety of ready-made off-the-shelf plates has offered a wide range of complex functionality and has led to design of various extremely reliable automated control systems (ACS) that were extensively used both in the space research and the defense projects of the USSR. The key role of University research is emphasized and the progress stages of Professor Taras N. Sokolov's school of thought are mentioned. The relevant events in the period of confrontation between the United States and the Soviet Union during the cold war and the space race are revealed. The text is accompanied by numerous links to serve as a guide to references given in bibliography.
机译:本文重点介绍了计算机科学历史上的某些重要页面,这些页面实际上不仅为俄罗斯国内外的普通科学界所熟知,而且为许多计算机和电信专家所不了解。列宁格勒理工学院(LPI)的科学家和工程师团队的成就引起了人们的注意,他们开发了实时计算机系统,该系统在90年代中期设计用于支持发射导弹和将人造地球卫星送入轨道。讨论了与早期弹道参数的测量和处理有关的问题,这需要对石英和温度系列的专用数字计算机进行创新的设计和构造。随后描述的是独特硬件的后续发明,该硬件基于大批量组装并包装到紧凑的屏蔽结构模块(“板”)中的原始无二重铁氧体逻辑元素(ferrite-ferrite logic)。各种现成的现成板提供了广泛的复杂功能,并导致了各种极其可靠的自动控制系统(ACS)的设计,这些系统已广泛用于航天研究和国防项目中苏联。强调了大学研究的关键作用,并提到了塔拉斯·索科洛夫教授的思想流派的发展阶段。揭示了冷战和太空竞赛期间美国与苏联对抗时期的有关事件。该文本带有许多链接,可作为参考书目中参考文献的指南。

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