Title :
A Fault-Tolerant Routing Algorithm Design for On-Chip Optical Networks
Author :
Dong Xiang ; Yan Zhang ; ShuChang Shan ; Yi Xu
Author_Institution :
Sch. of Software, Tsinghua Univ., Beijing, China
fDate :
Sept. 30 2013-Oct. 3 2013
Abstract :
Optical networks have been considered for on-chip communications due to its advantages on bandwidth density, power efficiency and propagation speed over the electrical counterpart. However, the major optical device-micro ring resonator is very sensitive to manufacturing errors and temperature fluctuations, which results in the bandwidth loss or even the failure of optical link. Thus, this paper proposes a fault-tolerant and deadlock-free routing algorithm to improve the reliability of on-chip optical network without requiring additional virtual channel. In addition, a path selection mechanism taking account of the actual bandwidth of the optical link affected by fabrication and temperature variations is implemented in the routing unit. The simulation results show that compared to the conventional fault-tolerant routing methods, our routing algorithm can improve the transmission latency and throughput of the network under static and dynamic link faults by up to 51% and 22%, respectively.
Keywords :
optical fibre networks; telecommunication network reliability; telecommunication network routing; bandwidth density; deadlock free routing algorithm; electrical counterpart; fault tolerant routing algorithm design; manufacturing errors; onchip communications; onchip optical network reliability; onchip optical networks; optical device micro ring resonator; power efficiency; propagation speed; temperature fluctuations; virtual channel; Bandwidth; Fault tolerance; Fault tolerant systems; Optical fiber communication; Ports (Computers); Routing; System recovery; Deadlock-free adaptive routing; Fault-tolerant routing; Optical network; Reliability;
Conference_Titel :
Reliable Distributed Systems (SRDS), 2013 IEEE 32nd International Symposium on
Conference_Location :
Braga
DOI :
10.1109/SRDS.2013.9