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3D fluxgate sensors are used to characterization magnetic properties.The aim of <br /> <br /> <br /> <br /> <br /> <br /> <br /> this study is developing a 3D fluxgate sensor to detect material magnetic in <br /> <br /> <br /&...
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Format: | Theses |
Language: | Indonesia |
Online Access: | https://digilib.itb.ac.id/gdl/view/19085 |
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Institution: | Institut Teknologi Bandung |
Language: | Indonesia |
Summary: | 3D fluxgate sensors are used to characterization magnetic properties.The aim of <br />
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this study is developing a 3D fluxgate sensor to detect material magnetic in <br />
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subsurface of soil using electromagnetic methods. Fluxgate sensor consists of <br />
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three prime parts, an excitation coil, pick-up coil and core sensor. Excitation coil <br />
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generates an internal magnetic field that serves as a reference magnetic field.The <br />
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pick-up coil or secondary coil is used to measure the external magnetic field that <br />
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affecting the magnetic field intensity from the solenoid coil as a main source. The <br />
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most important part is the core sensor. 3D fluxgate has 3 sensors that <br />
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perpendicular to each other measuring three component of the external magnetic <br />
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field in x-axis, y-axis and z-axis. In this research, it is successfully build a 3D <br />
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fluxgate with sensitivity of sensor x, sensor y, sensor z is 755 mV/μT, 897 <br />
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mV/μT, and 835 mV/μT, respectively. It is also shown that the higher magnetic <br />
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susceptibility of soil will increase the signal of the magnetic field to the sensor. <br />
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Varied size of ferrit are used in subsurface objects as magnetic materials. The <br />
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larger size of material object will boost up the magnetic flux to the sensor.The <br />
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shorter the distance between object and the sensors, will cause the signal of the <br />
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magnetic field to the sensors go up, it is also happening on the contrary. |
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