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首页> 外文期刊>Current Directions in Biomedical Engineering >Improvement of a multi-stage model for the modeling of a functionalized nursing bed as support for the sensor-assisted function-alization of furniture in the hospital and care sector
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Improvement of a multi-stage model for the modeling of a functionalized nursing bed as support for the sensor-assisted function-alization of furniture in the hospital and care sector

机译:改进多阶段模型,以对功能化护理床进行建模,以支持医院和护理部门中家具的传感器辅助功能化

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Development of preparation-free functionalized furniture based patient monitoring systems for use in the area of home- or stationary- care is often empirically driven. In particular, functionalization of furniture by means of different sensors is strongly affected by this development methodology. As a result, the systems are often not extensive-ly extendable or cannot be optimized because basic mechanisms are not comprehensible. In order to support development or optimization, a modelling approach is often useful. Thus, using a more comprehensive approach the required sensitivity of the sensors as well as their position in the system can be derived from a simulation model. In order to solve this problem, a multi-stage model was introduced at the BMT conference in 2014 by the authors, which allows the designer to model the entire system. The model has been extended and improved in the meantime and the achieved progress is presented in this work. The presented modelling approach can be divided into three main components. These are the person under supervision, the furniture (in our case a nursing bed) and the sensors (force measuring cells) which are modelled separately. In this work the main focus will be on improving the modelling of the human movement process and its implementation. Furthermore, the modelling of the sensor behavior in the nursing bed is described in detail with regard to their oscillation behavior and the influence on the model.
机译:通常凭经验来驱动用于家庭护理或固定护理领域的无准备的功能化家具式患者监护系统的开发。特别地,通过不同的传感器对家具的功能性受到这种开发方法的强烈影响。结果,由于基本的机制不容易理解,所以这些系统通常不能广泛扩展或无法优化。为了支持开发或优化,建模方法通常很有用。因此,使用更全面的方法,可以从仿真模型中得出所需的传感器灵敏度及其在系统中的位置。为了解决这个问题,作者在2014年的BMT会议上介绍了一个多阶段模型,该模型允许设计人员对整个系统进行建模。同时,对该模型进行了扩展和改进,并在此工作中介绍了取得的进展。提出的建模方法可以分为三个主要部分。这些是受监督的人,分别建模的家具(在我们的情况下是护理床)和传感器(测力单元)。在这项工作中,主要重点将放在改进人体运动过程及其实施的建模上。此外,就护理床中传感器行为的振动行为及其对模型的影响进行了详细描述。

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