Abstract:High-frequency transient weak magnetic field is always involved in researches about biomedical engineering field while common magnetic-field sensors cannot work properly at frequencies as high as MHz. To measure the value of MHz-level weak pulsed magnetic-field strength accurately, a measurement and calibration method for pulsed magnetic-field was designed in this paper. A device made of nonferromagnetic material was independently designed and applied to pulsed magnetic field measurement. It held an accurately relative position between the magnetic field generating coil and the detecting coil. By applying a sinusoidal pulse to the generator, collecting the induced electromotive force of the detector, the final magnetic field strength was worked out through algorithms written in Matlab according to Faradays Law. Experiments were carried out for measurement and calibration. Experiments showed that, under good stability and consistency, accurate measurement of magnetic-field strength of a sinepulse magnetic-field can be achieved, with frequency at 0.5 MHz, 1 MHz, 1.5 MHz and strength level at micro-Tesla. Calibration results carried out a measuring relative error about 2.5%.
陈怡美 刘志朋 殷涛*. 高频脉冲弱磁场检测技术的研究[J]. 中国生物医学工程学报, 2012, 31(2): 190-197.
CHEN Yi Mei LIU Zhi Peng YIN Tao*. Study on the Measurement of High-Frequency Pulsed Magnetic Field Strength. journal1, 2012, 31(2): 190-197.