Abstract:
Imaging the heart magnetic field to diagnose is a cutting-edge development direction to overcome cardiovascular diseases. Since the heart's magnetic field is extremely we...Show MoreMetadata
Abstract:
Imaging the heart magnetic field to diagnose is a cutting-edge development direction to overcome cardiovascular diseases. Since the heart's magnetic field is extremely weak, the magnetic field must be detected in a magnetic shielding device when imaging the heart magnetic field. To improve the antidisturbance ability of the magnetic shielding device, this article proposes a disturbance suppression based high-precision magnetic field compensation (MFC) method for a magnetic shielding cylinder (MSC). A set of experimental system based on a MSC is built up and experiments verify the effectiveness of the proposed method in suppressing the external disturbance magnetic field.
Published in: IEEE Transactions on Industrial Electronics ( Volume: 72, Issue: 1, January 2025)
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- IEEE Keywords
- Index Terms
- Magnetic Field ,
- Magnetic Shielding ,
- Disturbance Suppression ,
- Magnetic Compensation ,
- Magnetic Shielding Cylinder ,
- External Magnetic Field ,
- External Disturbances ,
- System Performance ,
- Low-pass ,
- Frequency Band ,
- Transfer Function ,
- Current Source ,
- Power Spectral Density ,
- Analog-to-digital Converter ,
- Closed-loop Control ,
- PI Controller ,
- Feed-forward Loop ,
- Function Plots ,
- Feedforward Control ,
- Compensation System ,
- Extended State Observer ,
- Magnetic Coil ,
- Magnetic Disturbances ,
- Residual Field ,
- Transfer Function Of System ,
- High-precision Method ,
- Magnetic Noise ,
- Control System ,
- Anti-interference Ability ,
- Lock-in Amplifier
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Magnetic Field ,
- Magnetic Shielding ,
- Disturbance Suppression ,
- Magnetic Compensation ,
- Magnetic Shielding Cylinder ,
- External Magnetic Field ,
- External Disturbances ,
- System Performance ,
- Low-pass ,
- Frequency Band ,
- Transfer Function ,
- Current Source ,
- Power Spectral Density ,
- Analog-to-digital Converter ,
- Closed-loop Control ,
- PI Controller ,
- Feed-forward Loop ,
- Function Plots ,
- Feedforward Control ,
- Compensation System ,
- Extended State Observer ,
- Magnetic Coil ,
- Magnetic Disturbances ,
- Residual Field ,
- Transfer Function Of System ,
- High-precision Method ,
- Magnetic Noise ,
- Control System ,
- Anti-interference Ability ,
- Lock-in Amplifier
- Author Keywords