Kurogi Tadatoshi, Inoue Yuki, Fujiwara Takeshi, Minamizawa Kouta
Toyoda Gosei Co., Ltd., Aichi, Japan.
Keio University Graduate School of Media Design, Yokohama, Japan.
Front Robot AI. 2024 Sep 18;11:1415464. doi: 10.3389/frobt.2024.1415464. eCollection 2024.
Haptic Augmented Reality (HAR) is a method that actively modulates the perceived haptics of physical objects by presenting additional haptic feedback using a haptic display. However, most of the proposed HAR research focuses on modifying the hardness, softness, roughness, smoothness, friction, and surface shape of physical objects. In this paper, we propose an approach to augment the perceived stickiness of a physical object by presenting additional tactile feedback at a particular time after the finger lifts off from the physical object using a thin and soft tactile display suitable for HAR. To demonstrate this concept, we constructed a thin and soft tactile display using a Dielectric Elastomer Actuator suitable for HAR. We then conducted two experiments to validate the effectiveness of the proposed approach. In Experiment 1, we showed that the developed tactile display can augment the perceived stickiness of physical objects by presenting additional tactile feedback at appropriate times. In Experiment 2, we investigated the stickiness experience obtained by our proposed approach and showed that the realism of the stickiness experience and the harmony between the physical object and the additional tactile feedback are affected by the frequency and presentation timing of the tactile feedback. Our proposed approach is expected to contribute to the development of new applications not only in HAR, but also in Virtual Reality, Mixed Reality, and other domains using haptic displays.
触觉增强现实(HAR)是一种通过使用触觉显示器提供额外的触觉反馈来主动调节对物理对象的感知触觉的方法。然而,大多数已提出的HAR研究都集中在改变物理对象的硬度、柔软度、粗糙度、光滑度、摩擦力和表面形状上。在本文中,我们提出了一种方法,即通过使用适合HAR的薄而柔软的触觉显示器,在手指从物理对象上抬起后的特定时间提供额外的触觉反馈,来增强对物理对象的感知粘性。为了验证这一概念,我们使用适合HAR的介电弹性体致动器构建了一个薄而柔软的触觉显示器。然后,我们进行了两项实验来验证所提出方法的有效性。在实验1中,我们表明,开发的触觉显示器可以通过在适当的时间提供额外的触觉反馈来增强对物理对象的感知粘性。在实验2中,我们研究了通过我们提出的方法获得的粘性体验,并表明粘性体验的真实感以及物理对象与额外触觉反馈之间的协调性受触觉反馈的频率和呈现时机的影响。我们提出的方法不仅有望为HAR领域的新应用开发做出贡献,也有望为使用触觉显示器的虚拟现实、混合现实和其他领域的新应用开发做出贡献。