Our idea is to determine the location of a person (rescuer) indoors, where there is no possibility of receiving GPS and GSM signals using Inertial Navigation Systems (INS). Our unconventional approach is based on the well-known in physics GYROSCOPIC EFFECT. In other words, the ability of the gyroscope to maintain the position of its axis in space (point M), relative to the starting point (point 0), where it was INITIATED (spun). In this case, the EVOLUTION of the body of the gyroscope while moving from point "0" to point "M" does not affect the position of the axis of the gyroscope in space.

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Description

Our idea is to determine the location of a person (rescuer) indoors, where there is no possibility of receiving GPS and GSM signals using Inertial Navigation Systems (INS).
Our unconventional approach is based on the well-known in physics GYROSCOPIC EFFECT. In other words, the ability of the gyroscope to maintain the position of its axis in space (point M), relative to the starting point (point 0), where it was INITIATED (spun). In this case, the EVOLUTION of the body of the gyroscope while moving from point "0" to point "M" does not affect the position of the axis of the gyroscope in space.