2003Unpublished venueRequires access

Advances toward Optical Subwavelength Switching

Shun Yao, Biswanath Mukherjee, Sudhir Dixit

Open publisher page 2 citations

Abstract

The current optical switching/routing solutions (e.g., optical cross-connects) only support the granularity at the wavelength level unless electronic grooming switch fabrics are used. However, a future-proof network not only needs high-capacity circuit switching, but also needs high performance switching with finer granularities. Therefore, this chapter focuses on various sub-wavelength switching techniques, such as optical packet switching, photonic slot routing, and optical burst switching.

About this research paper

What this paper is about

The current optical switching/routing solutions (e.g., optical cross-connects) only support the granularity at the wavelength level unless electronic grooming switch fabrics are used. However, a future-proof network not only needs high-capacity circuit switching, but also needs high performance switching with finer granularities. Therefore, this chapter focuses on various sub-wavelength switching techniques, such as optical packet switching, photonic slot routing, and optical burst switching.

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OpenAlex reports 2 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

The current optical switching/routing solutions (e.g., optical cross-connects) only support the granularity at the wavelength level unless electronic grooming switch fabrics are used. However, a future-proof network not only needs high-capacity circuit switching, but also needs high performance switching with finer granularities. Therefore, this chapter focuses on various sub-wavelength switching techniques, such as optical packet switching, photonic slot routing, and optical burst switching.

Key concepts: Optical burst switching, Optical switch, Circuit switching, Label switching, Burst switching, LAN switching, Packet switching, Granularity

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