Zobrazeno 1 - 9
of 9
pro vyhledávání: '"Masaru Ohkubo"'
Publikováno v:
Proceedings of the 23rd International Symposium on Wearable Computers.
We introduce a novel making method for kinetic garments, which can change their shape and are thus used for decoration and self-expression. Such garments are generally realized by attaching devices to garments, and wiring and control systems are requ
Autor:
Masaru Ohkubo, Takuya Nojima
Publikováno v:
AH
As a way to augment shape and movement of a tangible object, we propose an actuator interface called "SmartFiber". Different from our previous work, SmartHair[7], this interface integrates an actuation and information network. The SmartFiber is compo
Autor:
Miki Yamamura, Junichi Kanebako, Takuya Nojima, Masaru Ohkubo, Hiroko Uchiyama, Syo Yamaguchi, Mage Xue, Lisako Ishigami, Naoko Yamazaki
Publikováno v:
7th Forum on New Materials - Part D.
In a near future, many people will be able to visit and stay in the space hotels easier than now days. In this situation, a novel clothes that fit to the special environment will be required. In this paper, we describe the detail of a prototype of
Publikováno v:
SUI
Although there are many kinetic garment artworks and studies (ex [3]), installing kinetic elements into garments is often difficult for people in the field of textile. The reason for this issue comes from the complexity of kinetic elements to be hand
Publikováno v:
AH
Many research and products have augmented mobile interaction by integrating shape changing interface to overcome limited interaction space. However, most of these control systems tend to be complex and hard to configure due to the mechanical limitati
Publikováno v:
Advances in Computer Entertainment
Breathing clothes are media artworks formed as an application of the hairlytop interface. The hairlytop interface is an assembly of fine, soft and deformable actuators. Each actuator is composed of a shape memory alloy (SMA) and drive circuits. Vario
Publikováno v:
SMI@ICMI
The smart hair is the basic component of the hairlytop interface, which is a visual/haptic interface patterned with smart hair. The hair is composed of shape memory alloy(s), drive circuit(s), and light sensor(s) capable of controlling their bending.
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