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Model-Driven Approach for Body Area Network Application Development

机译:人体局域网应用开发的模型驱动方法

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摘要

This paper introduces the sensor-networked IoT model as a prototype to support the design of Body Area Network (BAN) applications for healthcare. Using the model, we analyze the synergistic effect of the functional requirements (data collection from the human body and transferring it to the top level) and non-functional requirements (trade-offs between energy-security-environmental factors, treated as Quality-of-Service (QoS)). We use feature models to represent the requirements at the earliest stage for the analysis and describe a model-driven methodology to design the possible BAN applications. Firstly, we specify the requirements as the problem domain (PD) variability model for the BAN applications. Next, we introduce the generative technology (meta-programming as the solution domain (SD)) and the mapping procedure to map the PD feature-based variability model onto the SD feature model. Finally, we create an executable meta-specification that represents the BAN functionality to describe the variability of the problem domain though transformations. The meta-specification (along with the meta-language processor) is a software generator for multiple BAN-oriented applications. We validate the methodology with experiments and a case study to generate a family of programs for the BAN sensor controllers. This enables to obtain the adequate measure of QoS efficiently through the interactive adjustment of the meta-parameter values and re-generation process for the concrete BAN application.
机译:本文介绍了传感器联网的IoT模型作为原型,以支持用于医疗保健的人体局域网(BAN)应用程序的设计。使用该模型,我们分析了功能需求(从人体收集数据并将其转移到最高层)和非功能需求(能源安全-环境因素之间的权衡,视为质量要求)的协同效应。 -服务(QoS))。我们使用特征模型来表示最早的分析需求,并描述一种模型驱动的方法来设计可能的BAN应用程序。首先,我们将需求指定为BAN应用程序的问题域(PD)可变性模型。接下来,我们介绍生成技术(元编程作为解决方案域(SD))和映射过程,以将基于PD特征的可变性模型映射到SD特征模型上。最后,我们创建一个可执行的元规范,该规范表示BAN功能,以描述通过转换的问题域的可变性。元规范(以及元语言处理器)是用于多个面向BAN的应用程序的软件生成器。我们通过实验和案例研究验证了该方法,以生成用于BAN传感器控制器的一系列程序。通过对元参数值的交互调整和针对具体BAN应用的重新生成过程,这可以有效地获得足够的QoS度量。

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