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April 30, 2026Scientific Reports0 citationsOpen Access

Optimized weight spectrum method for interference signal separation in FSO communication

ZDZhengguang DuanSQShengzhi Qiang赵赵浩年

Key Points

  • The aim is to enhance noise resistance in voice signals for free space optical communication using optimized weight spectra.
  • Employ an optimized weight spectrum method for signal processing
  • Transform signals into the frequency domain using Fourier transform
  • Analyze bit error rate under different signal-to-noise ratios with simulations.
  • Achieved a significantly lower bit error rate (BER) of less than 9.31 ‰
  • Showed improved noise reduction and anti-interference capabilities compared to traditional methods
  • Demonstrated enhanced reliability of voice transmission and adaptability of FSO systems in outdoor conditions.

Abstract

Free Space Optical (FSO) Communication, as a novel communication method, has advantages in terms of interference resistance and confidentiality compared to radio frequency (RF) technology. Since the spectrum of voice signals in FSO communication is confined to a specific range, thereby inherently limiting the range of frequencies that can be processed in the frequency domain. To enhance the noise resistance of voice signals in communications, we employed a method based on optimized weight spectra to identify and remove noise from signals. The sample signal is transformed into the frequency domain via Fourier transform, where noise is removed by applying an optimized weighting spectrum. Subsequently, the signal is reconstructed through inverse Fourier transform. The designed algorithm analyzed the bit error rate (BER) under different signal-to-noise ratios through simulation. Using the developed optical communication equipment at a distance of 80 m outdoors to test the BER of different modulation methods, the optimized weighted spectrum has a significantly lower BER, which is lower than 9.31 ‰. In this study, compared to the method of directly retaining effective frequency components, the BER significantly decreases, and the ability of noise reduction and anti-interference is notably improved. The use of new modulation techniques enhanced the reliability of voice information transmission, demonstrated potential applicability, and improved the environmental adaptability of FSO communication systems.

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Cite This Study

Duan et al. (2026) studied this question.

synapsesocial.com/papers/69f2f0e31e5f7920c6386e5ehttps://doi.org/10.1038/s41598-026-42985-z
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