Abstract Model driven flexible design of a wireless body sensor network for health monitoring
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Model driven flexible design of a wireless body sensor network for health monitoring

机译:用于健康监测的无线人体传感器网络的模型驱动的灵活设计

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AbstractThe Wireless Body Sensor Network (WBSN) is a wireless network that is designed to allow communication among sensor nodes that are attached to a human body to monitor the body’s vital parameters and environment. The design and development of such WBSN systems for health monitoring have received a large amount of attention recently, in research studies and in industry. This attention is mainly motivated by costly health care and by recent advances in the development of miniature health monitoring devices as well as emerging technologies, such as the Internet of Things (IoT), which contribute to the main challenges of 5G. The existence of an explicit approach to address the required software design and verification should be very beneficial for the construction and maintenance of such systems. This paper presents a preventive health care system that has a flexible design. The proposed system is based on an architecture that has heterogeneous nodes and provides both daily continuous monitoring as well as specific controls. We defined a model to describe the WBSN’s global behavior. An important aspect of this work is that we propose a model-driven engineering (MDE) approach to address the derivation of each node’s behavior in the WBSN from the WBSN global behavior. This approach allows developers to obtain a system design from the global specification of its requirement. To ensure the conformance of this design to its specification, the derived behaviors should be validated and verified before their deployment. In fact, formal methods are powerful tools for software engineers to verify the logical correctness of concurrent software at different levels of its life cycle. Model checking is one of the most powerful formal methods for verifying the logical correctness of such concurrent systems. In this work, we make use of a model checking approach that is based on a model transformation to validate the automatically derived behavior of a WBSN for health monitoring. This model-driven approach will check whether the derived system behaves correctly according to its global specification, while the objective is to increase the system’s performance and QoS. This approach allows the developer to reason about a model of the global system rather than about the system itself.
机译: 摘要 无线人体传感器网络(WBSN)是一种无线网络,旨在允许连接到人体的传感器节点之间进行通信,以监控人体的重要参数,并环境。这种用于健康监测的WBSN系统的设计和开发近来在研究研究和工业中受到了广泛的关注。这种关注主要是由于昂贵的医疗保健以及微型健康监控设备以及诸如5G的主要挑战之类的物联网(IoT)等新兴技术的最新发展而引起的。明确的方法可以解决所需的软件设计和验证问题,对于此类系统的构建和维护应该非常有益。本文提出了一种具有灵活设计的预防保健系统。所提出的系统基于具有异构节点的体系结构,并提供每日连续监视以及特定控件。我们定义了一个模型来描述WBSN的全球行为。这项工作的重要方面是,我们提出了一种模型驱动工程(MDE)方法,以解决WBSN中每个节点的行为都是从WBSN全局行为得出的。这种方法使开发人员可以从其要求的全局规范中获得系统设计。为确保此设计与其规范相符,派生的行为应在部署之前进行验证和验证。实际上,形式化方法是软件工程师用来验证并发软件生命周期不同级别的逻辑正确性的强大工具。模型检查是验证此类并发系统的逻辑正确性的最强大的形式方法之一。在这项工作中,我们使用基于模型转换的模型检查方法来验证用于健康监控的WBSN的自动派生行为。这种由模型驱动的方法将检查派生的系统是否根据其全局规范正确运行,而目标是提高系统的性能和QoS。这种方法使开发人员可以推理全局系统的模型,而不是系统本身。

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