TY - GEN
T1 - CMP network-on-chip overlaid with multi-band RF-interconnect
AU - Chang, M.
AU - Cong, Jason
AU - Kaplan, Adam
AU - Naik, Mishali
AU - Reinman, Glenn
AU - Socher, Eran
AU - Tam, Sai Wang
PY - 2008
Y1 - 2008
N2 - In this paper, we explore the use of multi-band radio frequency interconnect (or RF-I) with signal propagation at the speed of light to provide shortcuts in a many core network-on-chip (NoC) mesh topology. We investigate the costs associated with this technology, and examine the latency and bandwidth benefits that it can provide. Assuming a 400mm2 die, we demonstrate that in exchange for 0.13% of area overhead on the active layer, RF-I can provide an average 13% (max 18%) boost in application performance, corresponding to an average 22% (max 24%) reduction in packet latency. We observe that RF access points may become traffic bottlenecks when many packets try to use the RF at once, and conclude by proposing strategies that adapt RF-I utilization at runtime to actively combat this congestion.
AB - In this paper, we explore the use of multi-band radio frequency interconnect (or RF-I) with signal propagation at the speed of light to provide shortcuts in a many core network-on-chip (NoC) mesh topology. We investigate the costs associated with this technology, and examine the latency and bandwidth benefits that it can provide. Assuming a 400mm2 die, we demonstrate that in exchange for 0.13% of area overhead on the active layer, RF-I can provide an average 13% (max 18%) boost in application performance, corresponding to an average 22% (max 24%) reduction in packet latency. We observe that RF access points may become traffic bottlenecks when many packets try to use the RF at once, and conclude by proposing strategies that adapt RF-I utilization at runtime to actively combat this congestion.
UR - http://www.scopus.com/inward/record.url?scp=51549111756&partnerID=8YFLogxK
U2 - 10.1109/HPCA.2008.4658639
DO - 10.1109/HPCA.2008.4658639
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AN - SCOPUS:51549111756
SN - 9781424420704
T3 - Proceedings - International Symposium on High-Performance Computer Architecture
SP - 191
EP - 202
BT - Proceedings - International Symposium on High-Performance Computer Architecture
T2 - 2008 IEEE 14th International Symposium on High Performance Computer Architecture, HPCA 2008
Y2 - 16 February 2008 through 20 February 2008
ER -