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Issue title: Proceedings from the 17th International Symposium on Applied Electromagnetics and Mechanics (ISEM 2015)
Guest editors: Fumio Kojima, Futoshi Kobayashi and Hiroyuki Nakamoto
Article type: Research Article
Authors: Kato, Taroa | Suzuki, Ryosukea | Narita, Takayoshib | Kato, Hideakic; * | Yamamoto, Yoshiod
Affiliations: [a] Course of Mechanical Engineering, Tokai University, Tokyo, Japan | [b] Department of Electrical and Electronic Engineering, Tokyo University of Science, Tokyo, Japan | [c] Department of Prime Mover Engineering, Tokai University, Tokyo, Japan | [d] Department of Precision Engineering, Tokai University, Tokyo, Japan
Correspondence: [*] Corresponding author: Hideaki Kato, 4-1-1 Kitakaname, Hiratsuka-shi, Kanagawa, Japan. E-mail:hkato@tokai-u.jp
Abstract: In recent years, micro-compact electric vehicles have been developed and actively marketed, and has become popular as a new short-distance transfer mobility tool. While micro-compact electric vehicles do not have generate an engine sound, road and wind noises cause interior noise, and have a large impact on user comfort in the interior space. Recently the use of interior noise reduction by ANC has been used in the automobile industry. In this study, we propose a system whereby a giant magnetostrictive actuator is installed on the front window of a micro-compact electric vehicle to actively cut interface vibration noise, i.e., road noise, transmitted to the interior of the vehicle. In the experiment, we used an enclosure to simulate the interior of a vehicle and investigated the installation position of the giant magnetostrictive actuator to study the vibration characteristics of a window plate.
Keywords: Active noise control, giant magnetostrictive actuator, boundary surface vibration
DOI: 10.3233/JAE-162035
Journal: International Journal of Applied Electromagnetics and Mechanics, vol. 52, no. 1-2, pp. 153-160, 2016
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