Modeling of Doppler frequency shift in multipath radio channels

Author:

Пензин Максим1,Penzin Maksim2,Ильин Николай1,Ilyin Nikolay2

Affiliation:

1. Институт солнечно-земной физики СО РАН

2. Institute of Solar Terrestrial Physics SB RAS

Abstract

We discuss the modeling of propagation of a quasi-monochromatic radio signal, represented by a coherent pulse sequence, in a non-stationary multipath radio channel. In such a channel, signal propagation results in the observed frequency shift for each ray (Doppler effect). The modeling is based on the assumption that during propagation of a single pulse a channel can be considered stationary. A phase variation in the channel transfer function is shown to cause the observed frequency shift in the received signal. Thus, instead of measuring the Doppler frequency shift, we can measure the rate of variation in the mean phase of one pulse relative to another. The modeling is carried out within the framework of the method of normal waves. The method enables us to model the dynamics of the electromagnetic field at a given point with the required accuracy. The modeling reveals that a local change in ionospheric conditions more severely affects the rays whose reflection region is in the area where the changes occur.

Publisher

Infra-M Academic Publishing House

Subject

Space and Planetary Science,Atmospheric Science,Geophysics

Reference9 articles.

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3. Batukhin V.I., Ivanov V.A., Kolchev A.A., Rozanov S.Z. Measuring the Doppler frequency shift of particular rays using LFM ionosonde. Izvestiya vuzov. Radiofizika [Radiophysics and Quantum Electronics]. 2000, vol. 43, no. 12, pp. 1044–1054. (In Russian)., Batukhin V.I., Ivanov V.A., Kolchev A.A., Rozanov S.Z. Measuring the Doppler frequency shift of particular rays using LFM ionosonde. Izvestiya vuzov. Radiofizika [Radiophysics and Quantum Electronics]. 2000, vol. 43, no. 12, pp. 1044–1054. (In Russian).

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