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Enabling Multiple BSN Applications Using the SPINE Framework

机译:使用SPINE框架启用多个BSN应用程序

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Employment of BSN-based technologies in real world scenarios requires a flexible infrastructure at both hardware and software level. In this paper, we emphasize how the use of SPINE (Signal Processing In-Node Environment), a software framework for BSN, supports the development of heterogeneous health-care applications based on reusable subsystems. One of the main goal of SPINE is to provide a flexible architecture that can support variety of practical applications without the need for costly redeployment of the code running on sensor nodes. We also present a SPINE sensor node emulator that supports the first phase of the algorithm design, when the actual hardware devices may not be available. This approach can guide the choice of the required hardware (e.g. the sensors) to meet the application requirements based on the results obtained in the emulated environment. Such tool can simplify the research collaboration during the specification stage of a project, due to availability of a common (virtual) architecture.
机译:在现实世界中使用基于BSN的技术需要在硬件和软件级别都具有灵活的基础结构。在本文中,我们强调了BSN的软件框架SPINE(信号处理节点内环境)的使用如何支持基于可重用子系统的异构医疗应用程序的开发。 SPINE的主要目标之一是提供一种灵活的体系结构,可以支持各种实际应用,而无需昂贵地重新部署运行在传感器节点上的代码。当实际的硬件设备不可用时,我们还将介绍一个SPINE传感器节点仿真器,该算法支持算法设计的第一阶段。这种方法可以根据在仿真环境中获得的结果,指导选择所需的硬件(例如传感器)以满足应用需求。由于通用(虚拟)架构的可用性,这种工具可以简化项目规范阶段的研究协作。

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