Title :
A high performance Optical Network on Chip based on Clos topology
Author :
Zhang, Jing ; Gu, Huaxi ; Yang, Yintang
Author_Institution :
State Key Lab. of Integrated Service Networks, Xidian Univ., Xi´´an, China
Abstract :
Traditional metallic interconnects has become the bottleneck of NoC (Network on Chip) performance due to the limited bandwidth, long delay, high power consumption and crosstalk noise. Optical Network-on-Chip (ONoC) can decrease interconnect delays and provide higher bandwidth, lower power consumption. So ONoC is believed to be a promising solution. ONoC is based on silicon-based waveguides and CMOS-compatible microresonators. This paper proposes a 64-core Clos-based ONOC (CNoC) including its topology, floorplan and routing strategy and two optimized optical routers. CNoC is built from a strictly non-blocking network, Clos (15, 8, 8). It carries payload packets in an optical network while control packets in a separate electronic network. Two optical routers and a distributed routing algorithm are developed for CNoC application. Through a simulator Opnet, we compare the 64-core CNoC with mesh-based optical NoC and another Clos (8, 8, 8)-based OnoC. ETE delay and network throughput are analyzed under different offered loads and various packet sizes.
Keywords :
multistage interconnection networks; network routing; network topology; network-on-chip; optical interconnections; 64-core Clos-based ONOC; CNoC application; Clos (8,8,8)-based OnoC; Clos topology; ETE delay; ETE network; Opnet; distributed routing algorithm; electronic network; mesh-based optical NoC; optical network-on-chip; optical routers; Bandwidth; Energy consumption; Network topology; Network-on-a-chip; Optical crosstalk; Optical fiber networks; Optical interconnections; Optical noise; Optical waveguides; Routing; Clos network; Optical Network on Chip; Optical router; floorplan; topology;
Conference_Titel :
Future Computer and Communication (ICFCC), 2010 2nd International Conference on
Conference_Location :
Wuhan
Print_ISBN :
978-1-4244-5821-9
DOI :
10.1109/ICFCC.2010.5497287