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Prototyping Shape-Sensing Fabrics Through Physical Simulation

机译:通过物理模拟原型设计形状传感织物

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Embedding sensors into fabrics can leverage substantial improvements in application areas like working safety, 3D modeling or health-care, for example to recognize the risk of developing skin ulcers. Finding a suitable setup and sensor combination for a shape-sensing fabric currently relies on the intuition of an application engineer. We introduce a novel approach: Simulating the shape-sensing fabric first and optimize the design to achieve better real-world implementations. In order to enable developers to easily prototype their shape-sensing scenario, we have implemented a framework that enables soft body simulation and virtual prototyping. To evaluate our approach, we investigate the design of a system detecting sleeping postures. We simulate potential designs first, and implement a bed cover consisting of 40 distributed acceleration sensors. The validity of our framework is confirmed by comparing the simulated and real evaluation results. We show that both approaches achieve similar performances, with an F-measure of 85% for the virtual prototype and 89% for the real-world implementation.
机译:将传感器嵌入织物可以利用工作安全,3D建模或医疗保健等应用领域的大量改进,例如识别出现患皮肤溃疡的风险。寻找适用的设置和传感器组合,用于形状传感结构目前依赖于应用工程师的直觉。我们介绍一种新颖的方法:首先模拟形状传感结构,优化设计,实现更好的现实实现。为了使开发人员能够轻松地原型,我们已经实现了一个框架,可实现软体模拟和虚拟原型。为了评估我们的方法,我们研究了检测睡眠姿势的系统的设计。我们首先模拟电位设计,并实现由40个分布式加速度传感器组成的床盖。通过比较模拟和实际评估结果,确认了我们框架的有效性。我们表明,两种方法都达到了类似的性能,对于虚拟原型而85%的F测量值为85%,而现实世界的实施则为89%。

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