Fabrication of Power Saving Solar Magnetic Suspension System
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概要
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Extra low-power magnetic suspension system is achieved using solely solar power. Presently, solar cells have become more efficient and cost-saving year by year. In this work, a solar power generation technique is combined with zero-power control magnetic suspension. The zero-power control is achieved by converging the control current to zero in the steady states where the bias force generated by a permanent magnet is balanced with the gravitational force. Therefore, the steady-states power consumption becomes virtually zero in this suspension system. However, peripheral devices including sensors and controllers need power in both transient and steady states. Hence, the power consumed in the peripheral devices becomes dominant. In this work, dedicated power-saving peripheral devices are fabricated. It is observed that the average power consumed by the electromagnet is 20[mW] for suspending a 90-gram mass, and the power consumed by the peripheral devices is 13[mW]. In contrast, a conventional system consumes a few watts to suspend a floator of the same dimensions. The solar cells used in the apparatus has a maximum power capacity of 2[W] under a typical summer sunlight (approximately 120[klx]). The fabricated system can achieve stable suspension even under a illuminance of a fluorescent lamp of 5[klx].
著者
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Mizuno Takeshi
Saitama University
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Takasaki Masaya
Saitama University
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ISHINO Yuji
Saitama University
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MIZUNO Takeshi
Saitama University dept of Mechanical Engineering
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TAKASAKI Masaya
Saitama University dept of Mechanical Engineering
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ISHINO Yuji
Saitama University dept of Mechanical Engineering
関連論文
- A Nonlinear Compensator of Zero-Power Magnetic Suspension for Zero-Compliance to Direct Disturbance
- An Active Micro Vibration Isolator with Zero-Power Controlled Magnetic Suspension Technology(Advanced Technology of Vibration and Sound)
- B33 VIBRATION ISOLATION SYSTEM USING ZERO-POWER MAGNETIC SUSPENSION : 6^ REPORT: EXPERIMENTAL STUDY ON SYSTEM WITH A WEIGHT SUPPORT MECHANISM
- 221 AN ACTIVE MICROVIBRATION ISOLATOR WITH MAGNETIC SUSPENSION TECHNOLOGY(General Session III)
- Self-Sensing Magnetic Suspension Using an H-bridge Type Hysteresis Amplifier Operating in Two Quadrants
- Mass Measurement Using a System Containing an On-Off Relay with Dead Zone
- Foreword(Advances in Motion and Vibration Control Technology)
- Application of Unbalance Compensation to Totally Active Magnetically Suspended Gyro(The 20th MAGDA Conference in Pacific Asia (MAGDA2011))
- Realization of Voltage-controlled Double Parallel Magnetic Suspension System(The 20th MAGDA Conference in Pacific Asia (MAGDA2011))
- Foreword
- Improvement of Transient Characteristics of Negative Stiffness Control System by Feedforward Control
- Application of Unbalance Compensation to Totally Active Magnetically Suspended Gyro
- Double Electrostatic Suspension System Using Variable Capacitor
- Double Electrostatic Suspension System
- Flux-Path Control Magnetic Suspension System Using Voice Coil Motors
- Mass Measurement System Using Relay Feedback with Hysteresis
- Preface
- Fabrication of Power Saving Solar Magnetic Suspension System