基于多传感器系统的数据分析,对复杂分布式系统的某些威胁进行监测、预测和防范

S. Pavlov, Artur Gizatullin, E. Brekotkina, A. Ivantsov
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引用次数: 0

摘要

随着获取一般对象和系统的位置和相互位置数据的新来源和新技术的出现,以及它们与实时控制方法和算法的集成,为在复杂分布式系统(SRS)的管理中更现代和高质量地使用计算机技术创造了条件。此类SRS的组件本身就是复杂的分布式系统,并且具有(或可能具有)彼此之间的负面影响,也就是说,它们代表或构成对彼此的威胁。我们这个时代最紧迫的任务之一是开发各种通常是高度计算机化的工具和方法,以监测和预测构成这些威胁基础的过程(包括物理过程)的发展,从而抵御威胁。这篇文章讨论了如何避开一种类型的威胁——洪水。讨论了使用来自不同来源的各种信息的问题- -监测和预报相应地区的水位和相关洪水的传感器。利用实时自动测量的SRS参数及其进一步应用为抵御威胁的数字化决策支持的系统是一个复杂的高度计算机化的技术系统,属于物联网范畴。同时,它是SRS的数字子系统之一,对整个SRS的其他组成部分产生积极影响。所有这些信息来自各种(技术和部门)异构来源,因此为了快速和高质量地存储并用于监视、预测和抵御对SRS的威胁,需要专门的分析、结构化和分布式存储方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Monitoring, predicting the development and parrying of certain threats for complex distributed systems based on data analysis of multi-sensor systems
With the advent of new sources and technologies for obtaining data on the location and mutual location of objects and systems in general, as well as their integration into real – time control methods and algorithms, conditions have been created for more modern and high-quality use of computer technologies in the management of complex distributed systems (SRS). The components of such SRS are themselves complex distributed systems and have (or can potentially have), among other things, a negative impact on each other, that is, they represent or form a threat to each other. One of the most urgent tasks of our time is to develop various, usually highly computerized, tools and methods for parrying threats based on monitoring and forecasting the development of processes (including physical ones) that form the basis of these threats. This article discusses the problem of parrying one of the types of threats – flood. The issues of using various types of information coming from various sources – sensors for monitoring and forecasting the water level and associated flooding of the corresponding territories are considered. The system of using real-time automatically measured SRS parameters and their further application for digital decision support for parrying threats is a complex highly computerized technical system belonging to the class of the Internet of things. At the same time, it is one of the digital subsystems of the SRS that have a positive impact on other components of the SRS as a whole. All this information comes from various (technically and departmental) heterogeneous sources, so for its rapid and high-quality storage and use for monitoring, forecasting and parrying threats to the SRS, it needs specialized methods of analysis, structuring and distributed storage.
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