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首页> 外文期刊>Journal of Mechanisms and Robotics: Transactions of the ASME >Parametric Design of Parallel Force/Velocity Actuators: Force Distribution Analysis
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Parametric Design of Parallel Force/Velocity Actuators: Force Distribution Analysis

机译:平行力/速度执行器的参数设计:力分布分析

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In this paper we present the force distribution analysis for a dual input actuator called parallel force/velocity actuator (PFVA). We present five physical quantities that are relevant to the design and operation of PFVA-based systems. For each of them we (i) follow a first principles approach to develop a model, (ii) define dimensionless parameters and criteria that indicate the relative distribution of the quantity between the two inputs of the PFVA, (iii) express the basic model in terms of these dimensionless parameters, (iv) provide numerical examples using five candidate designs with commercial off-the-shelf components, (v) investigate the limiting case as the two inputs become more and more kinematically distinct, and (vi) suggest design guidelines based on our analysis. We studied four aspects of PFVA design: (i) mixing of position uncertainties of the two inputs, i.e., force actuator (FA) and velocity actuator (VA), (ii) distribution of static and inertia torques between the inputs for a given output loading condition, (iii) acceleration responsiveness, and lastly, (iv) effective stiffness of the PFVA system with respect to some basic design parameters of the PFVA. As an example result, we observed that the PFVA's effective stiffness will be at least 40% greater than that of the VA if the FA is 85% as efficient as the VA, the FA is 17% less stiff than the VA, and the kinematic scaling between the two inputs (FA and VA) is approximately 11.5. The results we obtained are organized into five design guidelines for the PFVA. To demonstrate the utility of this analysis and the guidelines, we present a design case study that describes a PFVA prototype. The results of this paper assist in better designing PFVA-based systems with a focus on the coupling between the two inputs.
机译:在本文中,我们介绍了一种称为平行力/速度执行器(PFVA)的双输入执行器的力分布分析。我们介绍了与基于PFVA的系统的设计和操作有关的五个物理量。对于它们中的每一个,我们(i)遵循第一原理方法来开发模型,(ii)定义无量纲参数和标准,以指示PFVA的两个输入之间的数量相对分布,(iii)表示基本模型。这些无量纲参数的术语,(iv)使用具有商业现货组件的五种候选设计提供数值示例,(v)随着两种输入在运动学上越来越不同而研究极限情况,并且(vi)建议设计准则根据我们的分析。我们研究了PFVA设计的四个方面:(i)混合两个输入的位置不确定性,即力致动器(FA)和速度致动器(VA),(ii)给定输出的输入之间的静转矩和惯性转矩分布(iii)加速响应能力,以及(iv)PFVA系统相对于PFVA的一些基本设计参数的有效刚度。作为示例结果,我们观察到,如果FA的效率是VA的85%,则PFVA的有效刚度将比VA的有效刚度至少高40%,FA的刚度比VA小17%,并且运动学上两个输入(FA和VA)之间的比例约为11.5。我们获得的结果被组织为PFVA的五项设计指南。为了演示此分析和指南的实用性,我们提供了描述PFVA原型的设计案例研究。本文的结果有助于更好地设计基于PFVA的系统,重点是两个输入之间的耦合。

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