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[in Japanese]
Article type: Article
Pages
191-192
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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[in Japanese], [in Japanese], Saulius Juodkazis, [in Japanese]
Article type: Article
Pages
193-194
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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[in Japanese], Saulius Juodkazis, Vygantas Mizeikis, [in Japanese], [i ...
Article type: Article
Pages
195-196
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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[in Japanese], Saulius Juodokazis, [in Japanese], [in Japanese], [in J ...
Article type: Article
Pages
197-198
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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[in Japanese], Vygandas Jarutis, Vygantas Mizeikis, Saulius Juodkazis, ...
Article type: Article
Pages
199-200
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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[in Japanese]
Article type: Article
Pages
201-202
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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[in Japanese]
Article type: Article
Pages
203-204
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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[in Japanese]
Article type: Article
Pages
205-206
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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[in Japanese]
Article type: Article
Pages
207-208
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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[in Japanese], [in Japanese], [in Japanese], [in Japanese], [in Japane ...
Article type: Article
Pages
209-210
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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[in Japanese]
Article type: Article
Pages
211-212
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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[in Japanese]
Article type: Article
Pages
213-214
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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[in Japanese]
Article type: Article
Pages
215-216
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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[in Japanese], [in Japanese]
Article type: Article
Pages
217-218
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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Katsuya Matsunaga
Article type: Article
Pages
219-220
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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We tried to improve the telepresence system to obtain higher efficiency than that offered by the conventional stereoscopic video system, which demonstrated lower efficiency than that under direct viewing and direct operation of the robot. Experimental results indicate that higher efficiency teleoperation requires a telepresence system that satisfies demands for a wide view angle and high spatial and time resolution of cameras and monitors. Furthermore, a higher overlapping ratio of the image of the stereoscopic paired images is effective to improve work performance. Based on experimental results, we developed a stereoscopic image system, named the Q-system, which provides wide angle images with central high spatial resolution images.
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[in Japanese]
Article type: Article
Pages
221-222
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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Koji Fujiwara
Article type: Article
Pages
223-224
Published: August 05, 2003
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[in Japanese]
Article type: Article
Pages
225-226
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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[in Japanese]
Article type: Article
Pages
227-228
Published: August 05, 2003
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Article type: Appendix
Pages
App7-
Published: August 05, 2003
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[in Japanese], [in Japanese], [in Japanese], [in Japanese]
Article type: Article
Pages
229-230
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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[in Japanese]
Article type: Article
Pages
231-232
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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[in Japanese], [in Japanese], [in Japanese], [in Japanese]
Article type: Article
Pages
233-234
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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Tadanobu INOUE, Akio OHMORI, Shiro TORIZUKA, Kotobu NAGAI
Article type: Article
Pages
235-236
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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[in Japanese]
Article type: Article
Pages
237-240
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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[in Japanese]
Article type: Article
Pages
241-242
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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[in Japanese]
Article type: Article
Pages
243-245
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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[in Japanese], [in Japanese]
Article type: Article
Pages
246-248
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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[in Japanese]
Article type: Article
Pages
249-250
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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[in Japanese], [in Japanese]
Article type: Article
Pages
251-252
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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[in Japanese], [in Japanese], [in Japanese], [in Japanese], [in Japane ...
Article type: Article
Pages
253-254
Published: August 05, 2003
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[in Japanese]
Article type: Article
Pages
255-256
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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[in Japanese]
Article type: Article
Pages
257-258
Published: August 05, 2003
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Koichi KAKIMOTO, Atsushi MURAKAWA, Hideo ISHII, Li jun LIU, Takashige ...
Article type: Article
Pages
259-260
Published: August 05, 2003
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Thermal conductivity of solid silicon as a function of mole fraction of isotope was investigated by molecular dynamics simulation. An empirical potential of Stillinger-Weber potential was used to speculate thermal conductivity of isotope silicon. The equilibrium molecular dynamics based on Green-Kubo's formula was used to investigate thermal conductivity of silicon as a function of mole fraction of isotope. The calculation clarified that thermal conductivity of mixed isotope silicon has a half value of that of pure isotope silicon. The calculation also investigated that pure isotope with light mass has a large thermal conductivity.
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[in Japanese], [in Japanese]
Article type: Article
Pages
261-262
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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[in Japanese]
Article type: Article
Pages
263-264
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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[in Japanese]
Article type: Article
Pages
265-266
Published: August 05, 2003
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[in Japanese]
Article type: Article
Pages
267-268
Published: August 05, 2003
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[in Japanese]
Article type: Article
Pages
269-270
Published: August 05, 2003
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[in Japanese]
Article type: Article
Pages
271-272
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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[in Japanese], [in Japanese], [in Japanese], [in Japanese]
Article type: Article
Pages
273-274
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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[in Japanese]
Article type: Article
Pages
275-276
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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[in Japanese]
Article type: Article
Pages
277-278
Published: August 05, 2003
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Hiroshi OKUBO
Article type: Article
Pages
279-280
Published: August 05, 2003
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Since smart structures consist of many structural and control components, the possibility of component failures increases due to the complexity and existence of multiple sensors and actuators. This paper investigates model-based failure detection methods for smart structures and proposes a new approach that is insensitive to disturbances due to unknown dynamics and model uncertainties. The present method is applied to a smart structure control system to show the robustness over unknown model errors.
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[in Japanese], [in Japanese], [in Japanese], [in Japanese]
Article type: Article
Pages
281-282
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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[in Japanese], [in Japanese]
Article type: Article
Pages
283-284
Published: August 05, 2003
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[in Japanese]
Article type: Article
Pages
285-286
Published: August 05, 2003
Released on J-STAGE: August 01, 2017
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[in Japanese]
Article type: Article
Pages
287-288
Published: August 05, 2003
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[in Japanese]
Article type: Article
Pages
289-290
Published: August 05, 2003
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Jinhao QIU, Junji TANI
Article type: Article
Pages
291-292
Published: August 05, 2003
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This article introduces the development of new piezoelectric ceramic devices for smart structural systems, which was carried out at the Institute of Fluid Science, Tohoku University as a part of the smart materials and structural systems research project sponsored by New Energy and Industrial Technology and Development Organization (NEDO). The new piezoelectric devices include high-performance PNN-PZT devices fabricated by a hybrid process of microwave heating and hot-press, PZT and PNN-PZT fibers without metal cores fabricated using a sol gel and powder hybrid process, PNN-PZT fibers with metal cores and functionally graded (FG) PZT bending actuators.
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