Storage area network extension over passive optical networks (S-PONS)
Document Type
Article
Publication Date
1-1-2008
Abstract
After 9/11 and the accidental failure of the power grid in North America in 2003, storage area network (SAN) extension has emerged as critical to ensuring business continuity. However, SAN extension encounters challenges in the access network, including scalability problems, cost challenges, bandwidth bottlenecks and low throughput. In this article, we propose a new solution to address these problems: SAN extension over passive optical networks (S-PONs). To tackle the scalability problems and cost challenges, we designed the S-PON architecture based on the existing point-to-multiple-point (P2MP) PON infrastructure. To address the bandwidth bottlenecks in SAN extension, we propose three solutions for carrying storage signals with gigabit-level transmission. We also introduce a new device, XtenOLT, for implementing buffer pools by a new buffer- management scheme to improve SAN extension throughput and utility. Our experimental results show that, in the physical layer, the proposed SPON transmission technologies successfully deliver SAN traffic to the long-haul at the rate of 2.5 Gb/s; in the network layer, S-PON with XtenOLT dramatically enhances deliverable throughput and utility over long-distance transmission. © 2008 IEEE.
Identifier
39449124634 (Scopus)
Publication Title
IEEE Communications Magazine
External Full Text Location
https://doi.org/10.1109/MCOM.2008.4427229
ISSN
01636804
First Page
44
Last Page
52
Issue
1
Volume
46
Recommended Citation
Yin, Si; Luo, Yuanqiu; Zong, Lei; Rago, Stephen; Yu, Jianjun; Ansari, Nirwan; and Wang, Ting, "Storage area network extension over passive optical networks (S-PONS)" (2008). Faculty Publications. 13005.
https://digitalcommons.njit.edu/fac_pubs/13005
