DocumentCode
1259551
Title
GMPLS-based photonic multilayer router (Hikari router) architecture: an overview of traffic engineering and signaling technology
Author
Sato, Ken-Ichi ; Yamanaka, Naoaki ; Takigawa, Yoshihiro ; Koga, Masafumi ; Okamoto, Satoru ; Shiomoto, Kohei ; Oki, Eiji ; Imajuku, Wataru
Volume
40
Issue
3
fYear
2002
fDate
3/1/2002 12:00:00 AM
Firstpage
96
Lastpage
101
Abstract
A new extended signaling and traffic engineering method for the GMPLS-based photonic and electrical multilayer router (Hikari router) is proposed. The method allows dynamic optical network management and photonic signal recovery, such as regeneration, reshaping, etc., to be realized adaptively. Wavelength conversion is also adaptive, which reduces network cost. Multilayer traffic engineering, which yields the dynamic cooperation of IP and photonic layers, is described to provide IP services cost effectively. To realize multilayer traffic engineering, we propose the OSPF extension, which advertises both the number of total wavelengths and the number of unused wavelengths, and the RSVP-TE extension, which minimizes the number of wavelength conversions needed. In addition, this paper proposes a heuristics-based multilayer topology design scheme that uses IP traffic measurements in a generalized multi-protocol label switch (GMPLS). The proposed scheme yields the optical label switch path (OLSP) network topology, that is, OLSP placement, that minimizes network cost, in response to fluctuations in IP traffic demand. In other words, the OLSP network topology is dynamically reconfigured to match IP traffic demand. Networks are reconfigured by the proposed scheme so as to utilize network resources in the most cost effective manner
Keywords
Internet; computer network management; network topology; optical fibre networks; optical wavelength conversion; photonic switching systems; telecommunication network routing; telecommunication signalling; telecommunication traffic; GMPLS-based photonic multilayer router; Hikari router architecture; IP layers; IP traffic demand; IP traffic measurements; OLSP network topology; OSPF extension; RSVP-TE extension; dynamic cooperation; dynamic optical network management; generalized multi-protocol label switch; heuristics-based multilayer topology design scheme; multilayer traffic engineering; network cost; network resources; optical label switch path network; photonic layers; photonic signal recovery; regeneration; reshaping; signaling technology; wavelength conversion; Adaptive systems; Costs; Network topology; Nonhomogeneous media; Optical fiber networks; Optical switches; Optical wavelength conversion; Repeaters; Telecommunication traffic; Wavelength measurement;
fLanguage
English
Journal_Title
Communications Magazine, IEEE
Publisher
ieee
ISSN
0163-6804
Type
jour
DOI
10.1109/35.989764
Filename
989764
Link To Document