Autotesting an Embedded Reconfigurable Computing System

A. Martyshkin, I. A. Kiryutkin, E. A. Merenyasheva
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Abstract

Purpose of research. The main idea is to build a mathematical testing model that integrates different aspects of an embedded reconfigurable computing system and its interactions. This model provides an efficient representation of test scenarios and allows to analyse the dynamics of the reconfigurable computing system during testing. The paper also discusses methods for generating test sequences based on the properties of a finite state machine.Methods. The authors propose to represent the autotest as a finite state Mile machine, where states serve to store information about the current state of an embedded reconfigurable computing system. The input signal is the interaction with the system and the output signal is the system's response to the input signal. This approach allows to formalize the testing process and simplify the analysis of possible problems.Results. This paper discusses the application of automata theory in the context of automated testing of embedded reconfigurable computing systems. Automata theory provides effective methods and tools for analysis and simulation of discrete dynamic systems, which makes it suitable for automated testing tasks.Conclusion. The results show that the use of automata theory can significantly improve the quality and efficiency of automated testing of embedded reconfigurable computing systems. This approach provides a deeper analysis of the system and allows to detect and prevent potential problems that may arise during its operation.
嵌入式可重构计算系统的自动测试
研究目的。主要思想是建立一个数学测试模型,该模型集成了嵌入式可重构计算系统及其交互的不同方面。该模型提供了测试场景的有效表示,并允许在测试期间分析可重构计算系统的动态。本文还讨论了基于有限状态机的性质生成测试序列的方法。作者建议将自动测试表示为有限状态英里机,其中状态用于存储有关嵌入式可重构计算系统当前状态的信息。输入信号是与系统的交互作用,输出信号是系统对输入信号的响应。这种方法可以使测试过程形式化,并简化对可能出现的问题的分析。本文讨论了自动机理论在嵌入式可重构计算系统自动化测试中的应用。自动机理论为离散动态系统的分析和仿真提供了有效的方法和工具,适用于自动化测试任务。结果表明,利用自动机理论可以显著提高嵌入式可重构计算系统自动化测试的质量和效率。这种方法提供了对系统的更深入的分析,并允许检测和防止在操作过程中可能出现的潜在问题。
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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