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Design and evaluation of a handle mechanism for a power-assisted cart with one motor, brakes and a differential gear

机译:具有一个电机,制动器和差速器的电动小车手柄机构的设计和评估

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In this study, we propose the design of a handle mechanism as an user interface for a power-assisted cart. The proposed power-assist cart has a motor, a differential gear, and brakes. This driving structure allows the cart to assist during going straight and turning motions. In other words, the cart can turn using brakes. The user applies brakes using the handle. The proposed mechanism is referred to as the “handle-brake mechanism”. Based on the handle-brake mechanism concept, a novel handle mechanism was designed. There are different parameters that influence the maneuverability of the cart during the turning motion, such as the user's operating force and the movable range of the handle. In this research we investigated the relationship between these two parameters and their influence in the cart's maneuverability. We estimated the maneuverability of the proposed handle mechanism through a subjective evaluation. The experiments measured the subjects' mental workload while operating the cart. The results provide insight about the effect of the handle's range of motion in the maneuverability.
机译:在这项研究中,我们提出了一种手柄机制的设计,作为电动手推车的用户界面。提出的动力辅助推车具有电动机,差速器和制动器。这种驱动结构使手推车可以在直行和转弯运动中提供帮助。换句话说,手推车可以使用制动器转弯。使用者使用手柄施加制动。提出的机制称为“手刹机制”。基于手柄制动机构的概念,设计了一种新颖的手柄机构。在转向运动期间,有不同的参数会影响手推车的可操纵性,例如用户的操作力和手柄的可移动范围。在这项研究中,我们研究了这两个参数之间的关系以及它们对推车可操作性的影响。我们通过主观评估来估计所提出的手柄机制的可操作性。实验测量了操作手推车时受试者的心理工作量。结果提供了有关手柄的运动范围对可操纵性的影响的见解。

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