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Real-time embedded software testing method based on extended finite state machine

机译:基于扩展有限状态机的实时嵌入式软件测试方法

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摘要

The reliability of real-time embedded software directly determines the reliability of the whole real-time embedded system, and the effective software testing is an important way to ensure software quality and reliability. Based on the analysis of the characteristics of real-time embedded software, the formal method is introduced into the real-time embedded software testing field and the real-time extended finite state machine (RT-EFSM) model is studied firstly. Then, the time zone division method of real-time embedded system is presented and the definition and description methods of time-constrained transition equivalence class (timeCTEC) are presented. Furthermore, the approaches of the testing sequence and test case generation are put forward. Finally, the proposed method is applied to a typical avionics realtime embedded software testing practice and the examples of the timeCTEC, testing sequences and test cases are given. With the analysis of the testing result, the application verification shows that the proposed method can effectively describe the real-time embedded software state transition characteristics and real-time requirements and play the advantages of the formal methods in accuracy, effectiveness and the automation supporting. Combined with the testing platform, the real-time, closed loop and automated simulation testing for real-time embedded software can be realized effectively.
机译:实时嵌入式软件的可靠性直接决定着整个实时嵌入式系统的可靠性,有效的软件测试是保证软件质量和可靠性的重要途径。在分析实时嵌入式软件特性的基础上,将形式化方法引入实时嵌入式软件测试领域,首先研究了实时扩展有限状态机(RT-EFSM)模型。然后,提出了实时嵌入式系统的时区划分方法,并提出了时间约束过渡等效类(timeCTEC)的定义和描述方法。此外,提出了测试序列和测试用例生成的方法。最后,将该方法应用于典型的航空电子实时嵌入式软件测试实践中,并给出了timeCTEC,测试序列和测试案例的实例。通过对测试结果的分析,应用验证表明,该方法可以有效地描述实时嵌入式软件的状态转换特性和实时要求,并发挥形式化方法在准确性,有效性和自动化支持方面的优势。结合测试平台,可以有效地实现针对实时嵌入式软件的实时,闭环和自动化仿真测试。

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