2016•Unpublished venueRequires access

Propagation delay stabilization to address fast and slow delay changes

Pavel Škoda, Michal Altmann, Josef Vojtěch, Jan Radil, Vladimír Smotlacha, Pavel Škoda

Open publisher page 3 citations

Abstract

We propose and demonstrate a combination of two methods to stabilize end-to-end delay of an optical fiber link. Temperature conditioning method effectively compensates large slow delay changes while wavelength tuning compensates fast delay jitter. We present our measurement data for three basic telecommunication optical fibers. We summarize design rules for delay jitter stabilization based on character and total delay jitter.

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What this paper is about

We propose and demonstrate a combination of two methods to stabilize end-to-end delay of an optical fiber link. Temperature conditioning method effectively compensates large slow delay changes while wavelength tuning compensates fast delay jitter. We present our measurement data for three basic telecommunication optical fibers. We summarize design rules for delay jitter stabilization based on character and total delay jitter.

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OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

We propose and demonstrate a combination of two methods to stabilize end-to-end delay of an optical fiber link. Temperature conditioning method effectively compensates large slow delay changes while wavelength tuning compensates fast delay jitter. We present our measurement data for three basic telecommunication optical fibers. We summarize design rules for delay jitter stabilization based on character and total delay jitter.

Key concepts: Jitter, Propagation delay, Computer science, Elmore delay, Group delay and phase delay, Electronic engineering, Processing delay, Delay calculation

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