About the use of numerical integral methods to simulate a fluxgate magnetometer: The ring-core example

2010 ◽  
Vol 163 (1) ◽  
pp. 48-53
Author(s):  
Y. Vuillermet
2018 ◽  
Vol 13 (1) ◽  
Author(s):  
N. B. Trived ◽  
F.X.K. Ogura ◽  
J. C. De Andrade ◽  
J. M. Da Costa ◽  
L. M. Barreto

Para solicitação de resumo, entrar em contato com editor-chefe ([email protected]). 


Pramana ◽  
2021 ◽  
Vol 95 (3) ◽  
Author(s):  
Ali Mosahebfard ◽  
Omidreza Daneshmandi ◽  
Ali Hosseinzadeh ◽  
Mohammad Abdi ◽  
Mahsa Yazdjerdy

1989 ◽  
Author(s):  
Robert E. Bracken ◽  
Victor F. Labson

2021 ◽  
pp. 110862
Author(s):  
J. Andrew Spencer ◽  
Brett Adair ◽  
Eric D. Held ◽  
Jeong-Young Ji ◽  
Joseph R. Jepson

2012 ◽  
Author(s):  
Soon Leong Chew ◽  
Rashdi Shah Ahmad ◽  
Rosly Jaafar

Pengukuran tanpa musnah bahan feromagnet dan gangguan medan magnet frekuensi rendah memerlukan penderia medan magnet yang mempunyai kepekaan yang tinggi dan stabil. Magnetometer yang berasaskan prinsip fluxgate dan memenuhi ciri-ciri yang diperlukan telah dibina dengan menggunakan teras gelang ferit. Teras gelang ferit ini dipacukan dengan sumber arus untuk mencapai keadan histerisis. Gelung pengesan yang dililit merentasi gelang ferit akan mengesan perubahan medan magnet yang berlaku pada gelang ferit tersebut. Teknik pengesanan yang digunakan adalah berasaskan pengesanan harmonik kedua oleh suatu pengesan fasa. Penderia fluxgate yang dibina adalah murah mudah dibina, mampu mengesan arah medan magnet dan tahan lasak. Kata kunci: Fluxgate; penderia medan magnet; histerisis; feromagnet Non–Destructive measurements of ferromagnetic material and low frequency magnetic flux distrubance require a highly sensitive and stable magnetic sensor with directional capabilities. A magnetometer based on fluxgate principle that meets the requirement had been developed using a ferrite ring core. The ferrite ring core is excited by an excitation current source to achieve hysteresis condition. The pick up coil that is wound across the ring core will pick up the magnetic flux generated in the ring core. This sensing method is based on the conventional type of fluxgate magnetometer with detection of second harmonics by a phase sensitive detector. Major advantages of the fluxgate magnetometer are low cost, directional, easy to construct, reliable and rugged. Key words: Fluxgate; magnetic sensor; hysteresis; ferromagnetic


2014 ◽  
Vol 919-921 ◽  
pp. 1164-1168
Author(s):  
Yu Yang ◽  
Yan Wang ◽  
Yun Fang Yang

Vertical vibration of identical simply supported bridges traversed by a train with uniformly distributed mass is investigated in this paper. The train with passengers onboard is simplified as a uniformly distributed two-layer spring-mass system as well as the bridges are simplified as consecutive simply supported Euler-Bernoulli beams. To analyze dynamic responses of the train and the bridges, the dynamic governing equation of the system is obtained and solved by a specific linear interpolating method and numerical integral methods. The result graphs indicate that dynamic responses of both beam and train carriage increase along with the mass ratio of bogie to car.


Author(s):  
Laurent MALANE ◽  
Jean-Baptiste KAMMERER ◽  
Luc HEBRARD ◽  
Vinciane CHEREAU

A scientific instrument which measures the magnetic field strength and its direction is known as Magnetometer. In this article a three axis Fluxgate Magnetometer is constructed by using simple ring core and simple drive circuits instead of specialized components like Hall Effect sensors. This type of Fluxgate magnetometers is working on the principle of magnetic flux linking a coil depends on the orientation of the coil with respect to the earth’s magnetic field lines. Here the three single axis fluxgate magnetometers are designed and placed perpendicular to each other on a board. The circuit is designed to produce 100 KHz frequency and to measure the Magnetic field in the range up to 7 Tesla. The sensitivity is tested through an external electromagnet. The readings are obtained in LAB-VIEW platform and the three-axis data is displayed.


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