IEEE Trans Haptics. 2024 Apr-Jun;17(2):191-201. doi: 10.1109/TOH.2023.3307872. Epub 2024 Jun 20.
Soft pneumatic displays have shown to provide compelling soft haptic feedback. However, they have rarely been tested in Virtual Reality applications, while we are interested in their potential for haptic feedback in the metaverse. Therefore, we designed a fully soft Pneumatic Unit Cell (PUC) and implemented it in a VR button task, in which users could directly use their hands for interaction. Twelve participants were asked to enter six-digit sequences, while being presented with PUC feedback, vibration feedback (VT), or no haptic feedback. Metrics on task performance, kinematics and cognitive load were collected. The results show that both vibration and PUC feedback resulted in participants pressing through the back of buttons less. The kinematic data showed that participants moved more smoothly during PUC feedback compared to vibration feedback. These effects were also reflected in the questionnaire data: participants felt more successful when using either PUCs or VTs, but they perceived the lowest level of stress when using PUCs. Feedback preference ratings also showed that PUC was the most preferred kind of feedback. Concluding, our array of metrics confirm that PUCs are good alternatives for haptic feedback in VR tasks in which electromechanical vibration motors typically excel: creating virtual button clicks.
软气动显示器已被证明能提供令人信服的软触觉反馈。然而,它们在虚拟现实应用中很少被测试,而我们对它们在元宇宙中触觉反馈的潜力很感兴趣。因此,我们设计了一个完全软的气动单元(PUC),并将其实现到一个 VR 按钮任务中,用户可以直接用手进行交互。我们让 12 名参与者输入六位数字序列,同时提供 PUC 反馈、振动反馈(VT)或无触觉反馈。收集了任务表现、运动学和认知负荷的指标。结果表明,振动和 PUC 反馈都减少了参与者按压按钮背面的次数。运动学数据显示,与振动反馈相比,参与者在 PUC 反馈下移动得更流畅。这些效果也反映在问卷调查数据中:参与者在使用 PUC 或 VT 时都感到更成功,但使用 PUC 时压力最小。反馈偏好评分也表明,PUC 是 VR 任务中触觉反馈的较好替代品,在这些任务中,机电振动电机通常表现出色:创建虚拟按钮点击。