Detail publikačního výsledku

Mitigation of Polarization Fading in Phase OTDR by Sequential Dual Polarization Reception

BARCÍK, P.; POSPÍŠIL, M.; VYCHODIL, J.; NOVOTNÝ, V.; PROKEŠ, A.

Originální název

Mitigation of Polarization Fading in Phase OTDR by Sequential Dual Polarization Reception

Anglický název

Mitigation of Polarization Fading in Phase OTDR by Sequential Dual Polarization Reception

Druh

Článek WoS

Originální abstrakt

Phase-sensitive Optical Time-Domain Reflectometry (Phi-OTDR) is inherently limited by polarization-induced fading caused by random state-of-polarization evolution of Rayleigh backscattered fields in optical fibers. These fluctuations lead to deep signal attenuation and degraded phase estimation in coherent detection systems. Conventional mitigation approaches rely on polarization-diversity receivers employing parallel coherent detection channels, which increases system complexity and cost. This paper presents a coherent Phi-OTDR architecture that suppresses polarization fading using a single coherent receiver. The proposed method is based on the sequential acquisition of orthogonal polarization components of the backscattered field. Identical probe pulses are launched into the sensing fiber, while the returned signal is split into two orthogonal polarization states and time-multiplexed into a single coherent detection chain. The complex responses corresponding to both polarization states are subsequently combined using Maximum-Ratio Combining (MRC), enabling statistically efficient phase reconstruction without parallel receiver hardware. Experimental results demonstrate effective fading suppression and robust vibration detection. Compared to selecting only the stronger polarization channel, the proposed MRC-based approach provides an improvement in the Signal-to-Noise Ratio (SNR) of approximately 3 dB. The architecture preserves polarization diversity gain while significantly reducing receiver complexity, offering a cost-efficient solution for polarization-independent distributed acoustic sensing.

Anglický abstrakt

Phase-sensitive Optical Time-Domain Reflectometry (Phi-OTDR) is inherently limited by polarization-induced fading caused by random state-of-polarization evolution of Rayleigh backscattered fields in optical fibers. These fluctuations lead to deep signal attenuation and degraded phase estimation in coherent detection systems. Conventional mitigation approaches rely on polarization-diversity receivers employing parallel coherent detection channels, which increases system complexity and cost. This paper presents a coherent Phi-OTDR architecture that suppresses polarization fading using a single coherent receiver. The proposed method is based on the sequential acquisition of orthogonal polarization components of the backscattered field. Identical probe pulses are launched into the sensing fiber, while the returned signal is split into two orthogonal polarization states and time-multiplexed into a single coherent detection chain. The complex responses corresponding to both polarization states are subsequently combined using Maximum-Ratio Combining (MRC), enabling statistically efficient phase reconstruction without parallel receiver hardware. Experimental results demonstrate effective fading suppression and robust vibration detection. Compared to selecting only the stronger polarization channel, the proposed MRC-based approach provides an improvement in the Signal-to-Noise Ratio (SNR) of approximately 3 dB. The architecture preserves polarization diversity gain while significantly reducing receiver complexity, offering a cost-efficient solution for polarization-independent distributed acoustic sensing.

Klíčová slova

Optical time-domain reflectometry, phase, polarization, unwrap, vibrations, optical fiber

Klíčová slova v angličtině

Optical time-domain reflectometry, phase, polarization, unwrap, vibrations, optical fiber

Autoři

BARCÍK, P.; POSPÍŠIL, M.; VYCHODIL, J.; NOVOTNÝ, V.; PROKEŠ, A.

Vydáno

01.04.2026

Nakladatel

Spolecnost Pro Radioelektronicke Inzenyrstvi

Periodikum

Radioengineering

Svazek

35

Číslo

1

Stát

Česká republika

Strany od

176

Strany do

183

Strany počet

8

URL

BibTex

@article{BUT201978,
  author="Peter {Barcík} and Martin {Pospíšil} and Josef {Vychodil} and Vít {Novotný} and Aleš {Prokeš}",
  title="Mitigation of Polarization Fading in Phase OTDR by Sequential Dual Polarization Reception",
  journal="Radioengineering",
  year="2026",
  volume="35",
  number="1",
  pages="176--183",
  doi="10.13164/re.2026.0176",
  issn="1210-2512",
  url="https://www.radioeng.cz/fulltexts/2026/26_01_0176_0183.pdf"
}