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Kinematic analysis and design of surface wave distributed actuators with application to a powered bed for bedridden patients

机译:面波分布式执行器的运动学分析和设计及其在卧床患者电动床上的应用

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A surface wave distributed actuation method and its potential for transporting bedridden patients is explored. First, the basic principle of surface wave distributed actuation is presented, followed by kinematic modeling and analysis. Based on the analysis, modifications to natural wave transport are made to enhance transport efficiency and human comfort. Further kinematic analysis reveals that an object can be transferred by a simplified actuator architecture that makes the concept amenable to hardware realization. Two proof-of-concept prototypes are designed, built, and tested. The first is a powered water bed consisting of a water vat, a flexible mat placed on the water surface, and an exciter creating surface waves at resonant frequencies. The other is a powered mechanical bed having an array of coordinated active nodes that generate psuedo-continuum surface waves. Experiments demonstrate the surface wave actuation concept and verify the analytical results.
机译:探索了一种表面波分布式致动方法及其在卧床患者运输中的潜力。首先介绍了表面波分布致动的基本原理,然后进行了运动学建模和分析。根据分析,对自然波传输进行了修改,以提高传输效率和人体舒适度。进一步的运动学分析表明,可以通过简化的执行器架构来传送对象,该简化的执行器架构使该概念适用于硬件实现。设计,构建和测试了两个概念验证原型。第一个是动力水床,包括水桶,放置在水面上的柔性垫和在共振频率下产生表面波的激励器。另一个是动力机械床,其具有产生伪连续谱表面波的协调活动节点阵列。实验证明了表面波驱动的概念并验证了分析结果。

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