首页> 外文会议>Asia Pacific Conference on Computer Human Interaction(APCHI 2004); 20040629-20040702; Rotorua; NZ >A Novel Locomotion Interface with Independent Planar and Footpad Devices for Virtual Walking
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A Novel Locomotion Interface with Independent Planar and Footpad Devices for Virtual Walking

机译:具有独立平面和脚踏板设备的新型行走接口,用于虚拟行走

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摘要

This paper describes a novel locomotion interface that can generate infinite floor for various surfaces. This interface allows users to participate in a life-like walking experience within virtual environments, which include various terrains such as slopes and stairs. The interface is composed of two three-DOF (X, Y, Yaw) planar devices and two three-DOF (Pitch, Roll, and Z) footpads. The planar devices are driven by AC servomotor for generating fast motions, while the footpad devices are driven by pneumatic actuators for continuous support of human weight. For sensing system, a motion tracker is attached to the human foot in order to track the foot positions, and the combination of planar forces from the planar device and the vertical forces of the footpad device gives the gravity reaction forces (GRF), which is important to recognize the walking condition. For control implementation, even though the human is walking continuously, the human body should be confined in certain area to walk on an infinite floor. Thus, the walking control algorithm is suggested to satisfy above conditions keeping the safety of the walker. For preliminary experimental evaluation of the interface device, the walking interface is proven for a general human to walk naturally without disturbing human body. This interface can be applied to various areas such as VR navigations, rehabilitation, vocational training, and military exercises.
机译:本文介绍了一种新颖的运动界面,它可以为各种表面生成无限的地面。该界面允许用户在虚拟环境中参与逼真的步行体验,虚拟环境包括各种地形,例如斜坡和楼梯。该接口由两个三自由度(X,Y,Yaw)平面设备和两个三自由度(Pitch,Roll和Z)脚垫组成。平面设备由交流伺服电机驱动以产生快速运动,而脚垫设备由气动致动器驱动以持续支撑体重。对于传感系统,运动跟踪器连接到人脚以跟踪脚的位置,并且来自平面设备的平面力和脚垫设备的垂直力的组合产生重力反作用力(GRF),即识别步行状况很重要。为了实现控制,即使人连续行走,也应将人体限制在一定的区域中以在无限的地板上行走。因此,建议步行控制算法满足上述条件,从而保持步行者的安全。为了对接口设备进行初步的实验评估,步行接口被证明可以使普通人自然行走而不会干扰人体。该界面可应用于各种领域,例如VR导航,康复,职业培训和军事演习。

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