Smart Vibration Sensor Using Giant Magnetostrictive Materials
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概要
- 論文の詳細を見る
A magnetostrictive vibration sensor has several advantages over conventional piezoelectric sensors. First, due to the high impedance output signal, piezoelectric sensors require a charge to voltage converter and a power supply to process the signal. In the case of the magnetostrictive sensors, the output signal is already a low impedance voltage which can be analyzed directly. A second advantage is its structural simplicity. The sensor can be easily assembled or disassembled. A third advantage of the magnetostrictive vibration sensor can be attributed to the high Curie temperature of magnetostrictive materials, which stands at 380℃ as compared to 180℃ for a typical piezoelectric material. This study presents a novel application of giant magnetostrictive material to a three-dimensional vibration sensor. The sensor is called three-dimensional because it is intended to measure a vibration exerted along an arbitrary direction. Sensor signals are measured for various directions of vibration based on which the identification of unknown vibration is attempted. A neural network is employed to learn the observed data. The generalization of the trained network is tested on unknown vibrations.
- 一般社団法人日本機械学会の論文
- 1997-06-15
著者
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Yamamoto Yoshio
Departmcnt Of Cardiology Surugadai Nihon University Hospital
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Eda Hiroshi
Department Of Systems Engineering Ibaraki University
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Rathore Amer
Material Research Center Tdk Corporation
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MORI Teruo
Material Research Center, TDK Corporation
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Mori Teruo
Material Research Center Tdk Corporation
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Eda Hiroshi
Department of Intelligent Systems Engineering, Ibaraki University
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