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Foot-pedal: Haptic feedback human interface bridging sensational gap between remote places

机译:脚踏板:触觉反馈人机界面弥合了偏远地区之间的感觉差距

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Teleconferencing or teleoperation has been used for some years in actual fields including many different types of companies, faculties, hospitals and even in game industries. The technology involves capturing the user's movements and replaying it at a remote location. However, today's technology reaches to not just presenting oneself virtually at a remote location, but also letting the user experience the remote environment without having to actually exist in the place. This allows the user to feel and manipulate the remote environment or another person in a more intuitive manner and an actual physical interaction between the user and the remote environment possible. This paper suggests a new type of a human interface which the user can manipulate with his or her feet allowing the hands to move freely during the interaction. The proposed mechanism is a foot-pedal type haptic feedback human interface and is equipped with 4 different sensors that can observe the user's movements in 4 different DOFs. In addition, the interface is composed of 2 independent motors which can provide the user with the haptic feedback from the remote environment. In this paper, various control algorithms are presented which decide the action or haptic feedback from the interface depending on the remote surroundings. The performance of the proposed interface is verified through several experiments in different scenarios.
机译:电话会议或远程操作已经在实际领域中使用了多年,包括许多不同类型的公司,教职员工,医院甚至游戏行业。该技术涉及捕获用户的动作并在远程位置重播它。但是,今天的技术不仅可以虚拟地显示在远程位置,还可以让用户体验远程环境,而不必实际存在于该位置。这允许用户以更直观的方式感觉和操纵远程环境或另一个人,并且用户与远程环境之间的实际物理交互是可能的。本文提出了一种新型的人机界面,用户可以用他或她的脚进行操作,从而在交互过程中手可以自由移动。所提出的机制是脚踏板型触觉反馈人机界面,并配备了4个不同的传感器,可以观察用户在4个不同的自由度中的运动。此外,该界面由2个独立的电机组成,可以为用户提供来自远程环境的触觉反馈。在本文中,提出了各种控制算法,这些算法根据远程环境决定来自界面的动作或触觉反馈。通过在不同情况下进行几次实验,验证了所提出接口的性能。

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