Haptic Interaction 5th International Conference, AsiaHaptics 2022, Beijing, China, November 12-14, 2022, Proceedings
by
 
Wang, Dangxiao. editor.

Title
Haptic Interaction 5th International Conference, AsiaHaptics 2022, Beijing, China, November 12-14, 2022, Proceedings

Author
Wang, Dangxiao. editor.

ISBN
9783031468391

Edition
1st ed. 2023.

Physical Description
X, 240 p. 144 illus., 123 illus. in color. online resource.

Series
Lecture Notes in Computer Science, 14063

Contents
Effects of Duration and Envelope of Vibrotactile Alerts on Urgency, Annoyance, and Acceptance -- Optimal Design of Braille Display Based on Adaptive-Network-based Fuzzy Inference -- Modality-Specific Effect of Cueing on Inter-Manual Coordination in Bimanual Force Control Tasks with Accentuated- or Attenuated-Force Production -- Creation of Realistic Haptic Experiences for Materialized Graphics -- Vibrotactile Encoding of Object Features and Alert for the Visually Impaired -- Haptic rendering algorithm for manipulating tiny objects attached on adhesive surface of rigid objects -- Ocular Tactile Vibration Intervention in VR and its Modeling coupled with Visual Fusion -- A Texture Display Device Based on Multi-coil Superposition Driving Method -- The Central Mechanism Underlying Extrapolation of Thermal Sensation -- Graphical Tactile Display Application: Design of Digital Braille Textbook and Initial Findings -- DeltaFinger: a 3-DoF Wearable Haptic Display Enabling High-Fidelity Force Vector Presentation at a User Finger -- Improvement of Discrimination of Haptic Motion Experience by Reproducing Multi-point Spatial Distribution of Propagated Vibrations at the Wrist -- Peripersonal space tele-operation in virtual reality: the role of tactile-force feedback -- CobotTouch: AR-based Interface with Fingertip-worn Tactile Display for Immersive Control of Collaborative Robots -- Multi-modal sensing-based interactive glove system for teleoperation and VR/AR -- Haptic Guidance for Robot Arm Teleoperation using Ray-based Holistic Collision Avoidance -- QoE-driven Scheduling for Haptic Communications with Reinforcement learning.

Added Author
Wang, Dangxiao.
 
Song, Aiguo.
 
Liu, Qian.
 
Kyung, Ki-Uk.
 
Konyo, Masashi.
 
Kajimoto, Hiroyuki.
 
Chen, Lihan.
 
Ryu, Jee-Hwan.

Added Corporate Author
SpringerLink (Online service)

Electronic Access
https://doi.org/10.1007/978-3-031-46839-1


LibraryMaterial TypeItem BarcodeShelf Number[[missing key: search.ChildField.HOLDING]]Status
Online LibraryE-Book521321-1001XX(521321.1)Elektronik Kütüphane