DocumentCode
3420771
Title
CAPEX minimization through node degree reduction in a Colorless and Directionless ROADM architecture for flexible optical networks
Author
Kishore, B. Sai ; Prasanna, G. ; Devarajan, A. ; Sandesha, K. ; Gopal, D. Nanda ; Venkataramaniah, K. ; Voruganti, Pavan ; Johnson, Ron
Author_Institution
Dept. of Phys., Sri Sathya Sai Univ., Prasanthi Nilayam, India
fYear
2009
fDate
14-16 Dec. 2009
Firstpage
1
Lastpage
3
Abstract
Service providers are constantly searching for means to reduce costs, generate new revenue streams and increase their competitive advantage. The migration to colorless and directionless mesh architecture will enable the service providers to realize new scalability, availability, flexibility and dynamic reconfigurability demands for optical networks. But commodification and standardization of the underlying technologies has made it very difficult to differentiate their service offerings especially in terms of price and performance. Hence, leveraging the intelligence of efficient routing algorithms, service providers can notably reduce the total cost of ownership of the network. This paper presents a rationalized routing algorithm for a colorless and directionless mesh core optical network, which enables a significant CAPEX reduction by decreasing the number of active degrees of a node.
Keywords
minimisation; optical fibre networks; standardisation; telecommunication network routing; CAPEX minimization; colorless ROADM architecture; commodification; directionless ROADM architecture; dynamic reconfigurability; flexible optical networks; node degree reduction; rationalized routing algorithm; service providers; standardization; Bandwidth; Costs; Optical fiber networks; Optical noise; Physics; Routing; Service oriented architecture; Signal to noise ratio; Telecommunication traffic; Testing; CAPEX; average node degree; colorless and directionless architecture; mesh optical networks; rationalized routing;
fLanguage
English
Publisher
ieee
Conference_Titel
Advanced Networks and Telecommunication Systems (ANTS), 2009 IEEE 3rd International Symposium on
Conference_Location
New Delhi
ISSN
2153-1676
Print_ISBN
978-1-4244-5989-6
Type
conf
DOI
10.1109/ANTS.2009.5409880
Filename
5409880
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