Presentation 2023-11-17
Design algorithm for optical path networks consist of subsystem-modular OXC nodes with iterative path accommodation
Atsuki Wada, Yojiro Mori, Hiroshi Hasegawa,
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Abstract(in Japanese) (See Japanese page)
Abstract(in English) In order to deal with increasing traffic demand efficiently, scalable optical cross-connects are needed. Subsystem-modular architecture has been proposed, in which small optical cross-connects are connected in parallel. Previous studies showed that networks with this architecture can be composed with the increase of 2% of inter-node fibers compared to networks with non-restricted optical cross-connects. Numerical simulations show that our proposed algorithm can design a network with subsystem-modular architecture suppressing the increase in inter-node fibers to 1.1% compared with conventional networks.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) Photonic Network / Optical Cross-Connect / Subsystem-Modular Architecture / Network Expansion
Paper # PN2023-45
Date of Issue 2023-11-09 (PN)

Conference Information
Committee PN
Conference Date 2023/11/16(2days)
Place (in Japanese) (See Japanese page)
Place (in English)
Topics (in Japanese) (See Japanese page)
Topics (in English)
Chair Kohei Shiomoto(Tokyo City Univ.)
Vice Chair Motoharu Matsuura(Univ. of Electr-Comm.) / Ryuichi Sugizaki(Furukawa Electric) / Noboru Yoshikane(KDDI Research)
Secretary Motoharu Matsuura(NTT) / Ryuichi Sugizaki(Nagoya Univ.) / Noboru Yoshikane
Assistant Kenji Ishii(Mitsubishi Electric) / Takafumi Tanaka(NTT)

Paper Information
Registration To Technical Committee on Photonic Network
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Design algorithm for optical path networks consist of subsystem-modular OXC nodes with iterative path accommodation
Sub Title (in English)
Keyword(1) Photonic Network
Keyword(2) Optical Cross-Connect
Keyword(3) Subsystem-Modular Architecture
Keyword(4) Network Expansion
1st Author's Name Atsuki Wada
1st Author's Affiliation Nagoya University(Nagoya Univ)
2nd Author's Name Yojiro Mori
2nd Author's Affiliation Nagoya University(Nagoya Univ)
3rd Author's Name Hiroshi Hasegawa
3rd Author's Affiliation Nagoya University(Nagoya Univ)
Date 2023-11-17
Paper # PN2023-45
Volume (vol) vol.123
Number (no) PN-267
Page pp.pp.50-54(PN),
#Pages 5
Date of Issue 2023-11-09 (PN)