Energiespeicher-Induktor-Magnetring
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Inductor designs with large dc current relative to ac ripple are often constrained by saturation, which limits their size, loss, and current-carrying capability.
What is a magnetic energy harvester based on?
a Electromagnetic energy harvester based on magnetic spring and vibration generator during the measurement of displacement by means the Laser displacement sensors LK-G32 and LK-G152; b Electromagnetic energy harvester based on magnetic spring and vibration generator during the measurement of magnetic induction by means the smart magnetic sensor
What is a magnetic spring based energy harvester?
In this paper, the design prototype of energy harvester based on magnetic spring integrated in the electromagnetic vibration generator is presented. The magnetic spring consists of a movable permanent magnet that levitates between two fixed magnets in vertical direction and moves linearly.
How is magnetic induction measured?
Measurements of magnetic induction have been carried out in the laboratory stand. The Magnetic Induction B that describes the field generated by a current plus the effect of magnetization of the material was measured using the Smart Magnetic Sensor Type SMS-102 ASONIK (Fig. 12 b).
What is magnetic induction B?
The Magnetic Induction B that describes the field generated by a current plus the effect of magnetization of the material was measured using the Smart Magnetic Sensor Type SMS-102 ASONIK (Fig. 12 b). The probe SN-PO442A for measurements of the axial magnetic field was located at 3 mm from magnetic spring closed on the air gap of cylindrical magnet.
How to measure induced magnetic field in a spring magnet?
When the floating magnet moves in the spring magnet, the vibration displacements of the floating magnet and vibration generator were tracked using a laser displacement sensors. The distribution of induced magnetic field in the spring magnet was measured by a precise magnetometer (Smart Magnetic Sensor ASONIK).