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The numerical experiment results of ULF signal propagation in a high-latitude earth-ionosphere waveguide under various heliogeophysical conditions are discussed in this work. Based on the simulation of the 1500 Hz harmonic signal propagation in a realistic high-latitude ionosphere, the features of the effect of electron density inhomogeneities depending on their size relative to the wavelength are shown. An analysis of the characteristics of ULF signal was carried out to identify those that could later be used to monitor the state of the ionosphere.