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According to different applications,the performance parameters of the several Geo-Electromagnetic Magnetic Induction Sensors( GEMISs) which are the most representative in the world are compared. After discussing the several key technologies for improving the performance of GEMISs,the main conclusions are as follows: the application bandwidth can be expanded by adopting flux negative feedback( 1 m Hz-10 k Hz);“laminated”core structure is useful for suppressing eddy current loss; the effective permeability of the core has increased observably after adding flux concentrators to the two ends of the core; the chopper amplifier is a useful method to suppress 1/f noise for reducing the GEMIS’s output noise; the indoor calibration scheme based on“long straight solenoid”proposed to obtain sensor sensitivity. Accordingly,the problem how to reduce the noise of GEMIS is urgent need to be solved,which will improve the performance of GEMIS. And there is plenty of work requires further study on parameters ’ optimization of coil and core. In the future,miniaturization,intelligence and three-axis measurement are the development directions of GEMIS.
According to different applications, the performance parameters of the several Geo-Electromagnetic Magnetic Induction Sensors (GEMISs) which are the most representative in the world are compared. After discussing the several key technologies for improving the performance of GEMISs, the main conclusions are as follows : the application bandwidth can be expanded by adopting flux negative feedback (1 m Hz-10 k Hz); “laminated” core structure is useful for suppressing eddy current loss; the effective permeability of the core has increased observably after adding flux concentrators to the two ends of the core; the chopper amplifier is a useful method to suppress 1 / f noise for reducing the GEMIS’s output noise; the indoor calibration scheme based on “long straight solenoid” proposed to obtain sensor sensitivity. problem how to reduce the noise of GEMIS is urgent need to be solved, which will improve the performance of GEMIS. And there is plenty of work no further study on p arameters’ optimization of coil and core. In the future, miniaturization, intelligence and three-axis measurement are the development directions of GEMIS.