Analysis of optical pulse coding in spontaneous Brillouin-based distributed temperature sensors.
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Summary
Experimental results confirm that, differently from Raman-based sensors, pulse coding affects the stimulated Brillouin threshold, resulting in lower optimal input power levels; these features allow one to achieve high sensing performance avoiding the use of high peak power pulses.
- Type
- article
- Published
- 2008-11-10
- Cited by
- 73
- References
- 25
- OpenAlex
- https://openalex.org/W19582002
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:7890620
Keywords
Political science
References
- Hadamard transform optics
- Improvement of signal-to-noise capabilities of a distributed temperature sensor using optical preamplification
- Nonlinear Fiber Optics
- A theoretical comparison of spontaneous Raman and Brillouin based fibre optic distributed temperature sensors
- Real-time long range complementary correlation optical time domain reflectometer
- Brillouin-based fiber-optic distributed temperature sensor with optical preamplification.
- Enhanced performance of long range Brillouin intensity based temperature sensors using remote Raman amplification
- Using simplex codes to improve OTDR sensitivity
- Landau Placzek ratio applied to distributed fibre sensing
- 50-km single-ended spontaneous-Brillouin-based distributed-temperature sensor exploiting pulsed Raman amplification.
- Combined distributed temperature and strain sensor based on Brillouin loss in an optical fiber.
- Brillouin-Based Distributed Temperature Sensor Employing Pulse Coding
- Raman-based distributed temperature sensor with simplex coding and link optimization
- Distributed Raman amplification combined with a remotely pumped EDFA utilized to enhance the performance of spontaneous Brillouin-based distributed temperature sensors
- A reconstruction technique for long-range stimulated Brillouin scattering distributed fibre-optic sensors: experimental results
- Simple distributed fiber sensor based on Brillouin gain spectrum analysis.
- Input power limits of single-mode optical fibers due to stimulated Brillouin scattering in optical communication systems
- Distributed fiber Brillouin strain sensing with 1-cm spatial resolution by correlation-based continuous-wave technique
- Efficient generation of guided millimeter-wave power by photomixing
- Significance of coherent Rayleigh noise in fibre-optic distributed temperature sensing based on spontaneous Brillouin scattering
Cited by
- Combination of phase modulation and coding for SNR enhancement in distributed Brillouin sensors
- Temperature response of an all-solid photonic bandgap fiber for sensing applications.
- Analysis of spontaneous Brillouin scattering spectrum for different modulated pulse shape
- Pushing the limit of the distributed Brillouin sensors for the sensing length and the spatial resolution
- Alternative Implementation of Simplified Brillouin Optical Correlation-Domain Reflectometry
- Use of Fabry-Pérot lasers for simultaneous distributed strain and temperature sensing based on hybrid Raman and Brillouin scattering
- Performance of Brillouin optical time domain reflectometer with erbium doped fiber amplifier
- Analysis of bandwidth-reduced local oscillator in Brillouin optical time domain reflectometry
- Distributed optical fibre sensors based on spontaneous Brillouin scattering employing multimode Fabry-Pérot lasers
- High-resolution DPP-BOTDA over 50 km LEAF using return-to-zero coded pulses.
- Improvement of pulse shape on Brillouin optical time domain reflectometry
- Optical pulse compression reflectometry: proposal and proof-of-concept experiment.
- Recent progress in optical fiber sensors based on Brillouin scattering at university of Ottawa
- Brillouin optical time-domain analysis assisted by second-order Raman amplification.
- Brillouin distributed temperature sensor employing phase modulation and optimization techniques
- Optical fiber sensors based on Brillouin scattering
- Raman-assisted BOTDA sensors
- Bipolar optical pulse coding for performance enhancement in BOTDA sensors.
- Fiber optical distributed temperature and strain sensing system based on Brillouin light scattering
- Design of Wide-Band Frequency Shift Technology by Using Compact Brillouin Fiber Laser for Brillouin Optical Time Domain Reflectometry Sensing System
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