Evaluation of Multi-Electrode Effects on Electrovibration Tactile Stimulation

Author:

Ishizuka Hiroki1,Suzuki Katsuyori1,Terao Kyohei1,Takao Hidekuni1,Shimokawa Fusao1,Kajimoto Hiroyuki2

Affiliation:

1. Department of Intelligent Mechanical Systems Engineering, Kagawa University

2. Department of Informatics, Graduate School of Informatics and Engineering, the University of Electro-Communication

Publisher

Japan Institute of Electronics Packaging

Reference30 articles.

1. [1] K. Nakagaki, J. Counts, D. Windham, D. Leithinger, S. Follmer, and H. Ishii, "Materiable : Rendering Dynamic Material Properties in Response to Direct Physical Touch with Shape Changing Interfaces," Proceedings of ACM CHI 2016, pp. 2764-2772, 2016.

2. [2] T. Hoshi, M. Takahashi, T. Iwamoto, and H. Shinoda, "Noncontact Tactile Display Based on Radiation Pressure of Airborne Ultrasound," IEEE Transactions on Haptics, Vol. 3, pp. 155-165, 2010.

3. [3] G. Yang, K. Kyung, M. A. Srinivasan, and D. Kwon, "Quantitative tactile display device with pin-array type tactile feedback and thermal feedback," Proceedings of ICRA 2006, pp. 3917-3922, 2006.

4. [4] J. Streque, A. Talbi, P. Pernod, and V. Preobrazhensky, "New Magnetic Microactuator Design Based on PDMS Elastomer and MEMS Technologies for Tactile Display," IEEE Trans. Haptics, Vol. 3, pp. 88-97, 2010.

5. [5] Q. Wang and V. Hayward, "Compact, Portable, Modular, High-performance, Distributed Tactile Transducer Device Based on Lateral Skin Deformation," Proceedings of Haptics 2006, pp. 67-72, 2006.

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