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Model checking the properties of ISO/IEEE 11073-20601:2016 standard-based communication protocol for personal health device

机译:模型检查用于个人保健设备的基于ISO / IEEE 11073-20601:2016标准的通信协议的属性

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Engineering of medical informatics systems is a complex work because it is at the intersection of several critical domains, among which medicine, computer science, electrical engineering to mention just a few. One critical aspect of such systems is the interoperability of the different components. One key solution for the interoperability is the creation of good standards that will assure the interchange of data between products of several vendors and domains - medical devices, medical information systems, medical data, etc. In this paper a formal analysis of the ISO/IEEE 11073 -20601: 2016 Draft Standard for Health informatics - Personal health device communication - Application profile - Optimized exchange protocol is described. This family of standards specifies the communication between devices that can be agents (weighing scales, spirometers) which measure health related data and managers (laptop, smartphone etc.) that collect the information and can display or forward it. First the protocol was modeled in Promela and then the model was checked manually and also using the Spin tool that performed an automated check. The results revealed issues which can cause deadlocks. However, these issues appeared in exceptional workflows, the normal flow being designed well. This highlights the methodology of developing such protocols: concentration on normal, intended behaviors without dealing with exceptional behaviors. Using formal models can reveal problems with exceptional behaviors. The results and proposed solutions were reported to the IEEE 1073 working group and will be integrated in the standard.
机译:医学信息系统工程是一项复杂的工作,因为它处于几个关键领域的交汇处,其中医学,计算机科学,电气工程仅举几例。这种系统的一个关键方面是不同组件的互操作性。互操作性的一个关键解决方案是创建良好的标准,该标准将确保多个供应商和域(医疗设备,医疗信息系统,医疗数据等)之间的数据交换。在本文中,对ISO / IEEE进行了正式分析11073 -20601:2016年卫生信息学标准草案-个人健康设备通信-应用程序配置文件-描述了优化的交换协议。该系列标准指定了可以作为代理(体重秤,肺活量计)(用于测量与健康相关的数据)的设备与用于收集信息并可以显示或转发信息的管理器(笔记本电脑,智能手机等)之间的通信。首先,在Promela中对协议建模,然后手动检查模型,并使用执行自动检查的Spin工具检查模型。结果揭示了可能导致死锁的问题。但是,这些问题出现在特殊的工作流程中,正常流程设计得很好。这突出了开发此类协议的方法:专注于正常的预期行为,而无需处理异常行为。使用形式模型可以揭示异常行为的问题。结果和建议的解决方案已报告给IEEE 1073工作组,并将集成到该标准中。

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