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首页> 外文期刊>Mechatronics, IEEE/ASME Transactions on >Design, Control, and Preliminary Assessment of a Multifunctional Semipowered Ankle Prosthesis
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Design, Control, and Preliminary Assessment of a Multifunctional Semipowered Ankle Prosthesis

机译:多功能半动力踝关节假体的设计,控制和初步评估

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摘要

This paper describes the design, control, and preliminary assessment of a novel microprocessor-controlled multifunction ankle prosthesis that provides three microprocessor-controlled behaviors-a selectable stiffness equilibrium angle, lockable conformal damping, and swing-phase repositioning. Following a description of the motivation for providing these behaviors, the authors provide a detailed description of the device and walking controller design. This device utilizes a power-asymmetric linear actuator to provide the desired functionality in a compact and lightweight package through a combination of both hydraulic and electromechanical actuation approaches. The device is controlled for level ground walking via a finite-state machine. The functionality of the prosthesis is demonstrated by a set of benchtop experiments that characterize the ability of the prosthesis to provide the three desired behaviors and by an experiment in which the prosthesis was worn by a transtibial amputee during walking. Both sets of experiments indicate that the prosthesis provides the functionality for which it was designed.
机译:本文介绍了一种新型的微处理器控制的多功能踝关节假体的设计,控制和初步评估,该假体提供了三种微处理器控制的行为-可选的刚度平衡角,可锁定的共形阻尼和摆相重新定位。在描述提供这些行为的动机之后,作者提供了对设备和步行控制器设计的详细描述。该装置利用功率非对称线性致动器,通过液压和机电致动方法的组合,在紧凑轻便的包装中提供所需的功能。该设备通过有限状态机进行水平地面行走的控制。假体的功能通过一组台式实验进行了演示,这些实验表征了假体提供三种所需行为的能力,并且通过了一个实验,在该实验中,假肢被跨胫截肢者在行走过程中佩戴。两组实验均表明假体提供了为其设计的功能。

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