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April 13, 2026Moscow University Physics Bulletin0 citations

Compensation of the Doppler Effect in RedShift Measurement Experiments

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ABA. V. BelonenkoVRV. N. RudenkoAGA. V. Gusev

Key Result

An alternating 'oneway' and 'twoway' signal transmission method effectively suppressed the Doppler shift without requiring velocity data, successfully extracting the RedShift signal.

Key Points

  • The aim is to improve precision in measuring the redshift effect by compensating for the Doppler effect.
  • Utilized alternating 'oneway' and 'twoway' signal transmission modes.
  • Evaluated conventional compensation techniques based on spacecraft navigation data.
  • Developed a novel compensation method without reliance on velocity data.
  • First-order Doppler effect exceeded target signal by five orders of magnitude.
  • The new method successfully extracted redshift signals from dominant Doppler effects.
  • Demonstrated significant improvement in detecting weak redshift effects in space astronomy experiments.

Structured PICO

I
Intervention
Alternating 'oneway' and 'twoway' signal transmission modes
C
Comparator
Conventional compensation techniques based on spacecraft navigation data
O
Outcome
Suppression of Doppler shift and extraction of the RedShift signal

A novel signal transmission method successfully compensates for the Doppler effect to extract weak RedShift signals in space astronomy missions.

Abstract

The Doppler effect is a physical phenomenon characterized by a frequency shift (or corresponding wavelength) of electromagnetic radiation resulting from relative motion between the emitting source and the detecting observer. The nonrelativistic Doppler effect constitutes a critical challenge for precision measurements of the RedShift effect in the RadioAstron mission. In these experiments the first-order Doppler effect exceeded the target signal by five orders of magnitude, while the relativistic effect remained one order of magnitude smaller. Conventional compensation techniques based on spacecraft navigation data proved inappropriate due to inherent limitations in velocity determination. We present an original compensation method employing alternating ‘‘oneway’’ and ‘‘twoway’’ signal transmission modes that effectively suppresses Doppler shift without requiring velocity data. When combined with relativistic Doppler effect compensation, this approach successfully extracted the RedShift signal from dominant Doppler effects. The developed method demonstrates significant improvement in detecting weak RedShift effects against strong Doppler background and shows potential for application in future high-precision space astronomy missions.

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Cite This Study

Belonenko et al. (2025) studied this question. Alternating 'oneway' and 'twoway' signal transmission modes vs. Conventional compensation techniques was evaluated on Extraction of the RedShift signal from dominant Doppler effects. An alternating 'oneway' and 'twoway' signal transmission method effectively suppressed the Doppler shift without requiring velocity data, successfully extracting the RedShift signal.

synapsesocial.com/papers/69dc87ea3afacbeac03e9fc7https://doi.org/10.3103/s0027134925701139
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