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A Software Modeling Method of Ocean Parameters Measurement System

机译:海洋参数测量系统的软件建模方法

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This paper describes an iterative, efficient, and use-case driven UML object modeling method used in the process of software development of an ocean parameters measurement system. The method solved all kinds of complex issues (complex related factor), variety (variety of equipment and data types), and frequent changes in the software development of an ocean parameters measurement system. This method combines static modeling and dynamic modeling, and it spans the gap between requirements and codes. The process includes domain modeling, use-case modeling, requirement review, robustness analysis, preliminary design review, sequence diagram drawing, critical design review, class diagram drawing, and testing and delivery. Compared with the functional structure design method, this method adds four iterative nodes: requirement review, preliminary design review, critical design review, and testing and delivery. It reduces the risk of the development process and improves the system development efficiency. Compared with the object-oriented software design method, the proposed method increases two processes, which are: robustness analysis and the critical design review, in order to further ensure that the development process is effective and accurate. All this is essential in the development of a good, reliable system architecture for software design. The software modeling of a sound velocity profiling measurement system is completed quickly and accurately by using this method. In engineering practice, the method is verified to be effective. It also can be used in the development of a measurement system for ocean currents, ocean waves, ocean noise and so on.
机译:本文介绍了在海洋参数测量系统的软件开发过程中使用的迭代,有效和用途驱动的UML对象模型方法。该方法解决了各种复杂问题(复杂相关因子),品种(各种设备和数据类型),以及海洋参数测量系统的软件开发的频繁变化。该方法结合了静态建模和动态建模,它跨越了需求和代码之间的差距。该过程包括域建模,用例建模,要求审查,鲁棒性分析,初步设计审查,序列图绘图,关键设计评论,类图绘图和测试和交付。与功能结构设计方法相比,该方法增加了四个迭代节点:要求审查,初步设计审查,关键设计审查和测试和交付。它降低了开发过程的风险,提高了系统开发效率。与面向对象的软件设计方法相比,所提出的方法增加了两个过程,即:鲁棒性分析和关键设计评论,以进一步确保开发过程有效和准确。这一切都在开发软件设计的良好,可靠的系统架构方面至关重要。使用此方法快速准确地完成声速分析测量系统的软件建模。在工程实践中,验证该方法有效。它还可以用于开发用于海洋电流,海浪,海洋噪声等的测量系统。

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