Software protection of the maglev transport control system

A. Kornienko, A. Glukhov, S. Diasamidze, Alexander M. Shatov
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Abstract

Background: The article examines the issues of regulation and the development of methodological approaches to ensuring the security of the software system for the management of magnetic-leaving transport at all stages of the life cycle, as well as the development of a tool to detect high-level (logical) software vulnerabilities. Aim: Development of a methodology for the creation of an error-free and impact-resistant software for the management system of magnetic-levitational transport. Methods: In the development of the methodology, the existing practices of searching for errors and vulnerabilities in software and approaches to the algorithmization of program code were studied. Results: During the study, a methodology was developed for creating an error-free and impact-resistant software for the management system of magnetic-levitational transport, which makes it possible to exclude the possibility of errors in the software, which significantly increases the safety of the overall transportation process. Conclusion: The application of the developed technique will improve the security of software for magnetic levitation transport control system from destructive external influences
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磁悬浮运输控制系统的软件保护
背景:本文研究了监管问题和方法方法的发展,以确保在生命周期的各个阶段管理磁性离开运输的软件系统的安全性,以及检测高级(逻辑)软件漏洞的工具的开发。目的:为磁悬浮运输管理系统开发一种无差错和抗冲击软件的方法。方法:在方法论的发展过程中,研究了现有的软件错误和漏洞搜索实践以及程序代码的算法化方法。结果:在研究过程中,为磁悬浮运输管理系统开发了一种无差错和抗冲击软件的方法,可以排除软件中错误的可能性,从而显着提高了整个运输过程的安全性。结论:该技术的应用将提高磁悬浮运输控制系统软件的安全性,使其免受外部破坏性影响
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