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Applying Software Engineering Methodology for Designing Biomedical Software Devoted To Electronic Instrumentation | Science Publications

机译:应用软件工程方法论设计专用于电子仪器的生物医学软件|科学出版物

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> Problem statement: Significant effort goes into the development of biomedical software, which is integrated with computers/processors, sensors and electronic instrumentation devoted to a specific application. However, the scientific work on electronic instrumentation controlled by biomedical software has not emphasized software development, instead focusing mainly on electronics engineering. The development team is rarely composed of Software Engineering (SE) experts. Usually, a commercial automated tools environment is not used due to its high cost and complexity for researchers from other areas to understand. Approach: This present study reports how the SE approach was applied to design and develop biomedical software, which is part of a Computerized Electronic Instrumentation (CEI). This CEI comprises software and an electronic instrumentation based on a force sensor and electrogoniometer to monitor the hand exertion of computer user during typing task. The aim is to serve as a guideline for academic researchers who are not expert in software engineering methodology but usually develop their own software to run with their CEI. The specification of the requirements, presented as use case, includes the context diagram, the data flow diagram, the entity relationship diagram and test procedure. The Unified Modelling Language from the Enterprise Architect tool was used. The developed software and the electronic instrumentation were tested together. Results: A sample of the interface screen shows how the outcomes could be plotted in an integrated manner. By comparing the values with other values obtained by manual calculations and with those provided by sensor manufacturer, the repeatability of test procedure validated the results. Reliable electronic instrumentation when working with unreliable software can become unreliable. Conclusion: Applying software engineering methodology principles provided a simple and clear documentation that was helpful to establish the test procedures and the re-work."
机译: > 问题陈述:生物医学软件的开发投入了大量精力,该软件与专用于特定应用的计算机/处理器,传感器和电子仪器集成在一起。但是,关于由生物医学软件控制的电子仪器的科学研究并未强调软件开发,而是主要关注电子工程。开发团队很少由软件工程(SE)专家组成。通常,不使用商业自动化工具环境,这是因为其成本高昂,而且其他领域的研究人员也难以理解。 方法:本研究报告了SE方法如何应用于设计和开发生物医学软件,该软件是计算机电子仪器(CEI)的一部分。该CEI包括软件和基于力传感器和电子测角仪的电子仪器,以监视打字任务期间计算机用户的手部动作。目的是为不是软件工程方法专家的学术研究人员提供指导,但他们通常会开发自己的软件来与CEI一起运行。需求规范(以用例表示)包括上下文图,数据流程图,实体关系图和测试过程。使用了Enterprise Architect工具中的统一建模语言。开发的软件和电子仪器一起进行了测试。 结果:界面屏幕示例显示了如何以集成方式绘制结果。通过将这些值与通过手动计算获得的其他值以及与传感器制造商提供的值进行比较,测试程序的可重复性验证了结果。当使用不可靠的软件时,可靠的电子仪器可能变得不可靠。 结论:应用软件工程方法论原理可提供简单明了的文档,有助于建立测试程序和返工。”

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