
The issues were reviewed in assessing external electromagnetic fields’ effect on the parameters of an electrical power line probing system based on three-component ferroprobes for detecting active underground power cable lines during microtunnel construction using the thrust boring method (by tunneling shield) in densely populated urban areas. A study was conducted on the change in the topology of the energized cable magnetic field located in the external magnetic field area created by operating electrical equipment under the influence of an external electromagnetic field and a tunneling shield with installed magneto-sensitive detectors. Experimental studies of the probing system were made. Options have been proposed for compensating the inductance component of the external magnetic field during tunnel driving in urban development and industrial area conditions.
Technological innovations. Automation, external electromagnetic field, HD45-45.2, microtunneling shield, TA213-215, magnetic sensor, underground power line, Engineering machinery, tools, and implements, advanced probing system, microtunneling shield; underground power line; external electromagnetic field; advanced probing system; magnetic sensor
Technological innovations. Automation, external electromagnetic field, HD45-45.2, microtunneling shield, TA213-215, magnetic sensor, underground power line, Engineering machinery, tools, and implements, advanced probing system, microtunneling shield; underground power line; external electromagnetic field; advanced probing system; magnetic sensor
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