Automation of microservices creation for qualitative analysis of binary dynamic systems

G. Oparin, V. Bogdanova, A. A. Pashinin
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引用次数: 3

Abstract

The main objective of qualitative research is to analyze the behavior of the trajectories of a dynamic system to verify whether it corresponds to the set of constraints characterizing the property. We use an approach to study binary dynamic systems on a finite time interval based on the author's method of Boolean constraints. Based on this method, the Boolean model of the properties of a binary dynamic system is written in the language of Boolean equations or Boolean formulas with quantifiers. Thus, the verification of various dynamical properties is reduced to solving the problems of Boolean constraints satisfiability or the validity of a quantified Boolean formula using efficient SAT or TQBF solvers. The high computational complexity of these problems requires the development of software and tools for their parallel and distributed solving and ensuring transparent end-user access to highperformance computing environments based on a service-oriented approach. This paper represents the architecture and functionality of a new instrumental system that automates the creation of a distributed application for solving the considered class of problems based on the microservice approach and multi-agent technology.
用于二元动态系统定性分析的微服务创建自动化
定性研究的主要目的是分析动态系统轨迹的行为,以验证它是否符合表征该特性的约束集。基于作者的布尔约束方法,研究了有限时间区间上的二元动态系统。在此基础上,用布尔方程或带量词的布尔公式的语言来表示二元动力系统的性质的布尔模型。因此,各种动态特性的验证被简化为使用高效的SAT或TQBF求解器解决布尔约束可满足性或量化布尔公式有效性的问题。这些问题的高计算复杂性要求开发软件和工具来并行和分布式解决这些问题,并确保最终用户基于面向服务的方法透明地访问高性能计算环境。本文代表了一个新的仪器系统的架构和功能,该系统可以自动创建分布式应用程序,以解决基于微服务方法和多代理技术的考虑类问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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