Travelled to:
1 × Germany
1 × United Kingdom
2 × USA
3 × France
Collaborated with:
H.Tenhunen P.Liljeberg M.Daneshtalab M.Ebrahimi A.Rahmani M.Fattah T.Seceleanu F.Farahnakian S.Soroushnia T.Pahikkala M.Palesi I.Tcarenko S.R.Moosavi K.Latif H.Anwar M.Ramírez X.Chang M.H.Haghbayan Z.Navabi T.Ngyen S.M.A.H.Jafri A.Hemani S.Dytckov T.C.Xu A.Kanduri M.H.Neishaburi S.Mohammadi A.Afzali-Kusha
Talks about:
system (9) no (8) network (6) rout (6) mani (6) core (6) algorithm (5) awar (5) congest (4) base (4)
Person: Juha Plosila
DBLP: Plosila:Juha
Contributed to:
Wrote 21 papers:
- DATE-2015-HaghbayanRFLPNT #manycore #online #power management #testing
- Power-aware online testing of manycore systems in the dark silicon era (MHH, AMR, MF, PL, JP, ZN, HT), pp. 435–440.
- PDP-2015-NgyenJDHDPT #framework #named #network
- FIST: A Framework to Interleave Spiking Neural Networks on CGRAs (TN, SMAHJ, MD, AH, SD, JP, HT), pp. 751–758.
- PDP-2015-SoroushniaDPP #algorithm #gpu #implementation #parallel #pattern matching
- Parallel Implementation of Fuzzified Pattern Matching Algorithm on GPU (SS, MD, TP, JP), pp. 341–344.
- DAC-2014-FattahPLPT #manycore #named #runtime
- SHiFA: System-Level Hierarchy in Run-Time Fault-Aware Management of Many-Core Systems (MF, MP, PL, JP, HT), p. 6.
- PDP-2014-AnwarDERPT #integration #manycore
- Integration of AES on Heterogeneous Many-Core System (HA, MD, ME, MR, JP, HT), pp. 424–427.
- PDP-2014-FarahnakianLP #energy #learning #using #virtual machine
- Energy-Efficient Virtual Machines Consolidation in Cloud Data Centers Using Reinforcement Learning (FF, PL, JP), pp. 500–507.
- PDP-2014-FattahRXKLPT #manycore #runtime
- Mixed-Criticality Run-Time Task Mapping for NoC-Based Many-Core Systems (MF, AMR, TCX, AK, PL, JP, HT), pp. 458–465.
- PDP-2014-TcarenkoFLPT #approach #manycore #modelling
- Multi Rectangle Modeling Approach for Application Mapping on a Many-Core System (IT, MF, PL, JP, HT), pp. 452–457.
- DAC-2013-FattahDLP #agile #manycore
- Smart hill climbing for agile dynamic mapping in many-core systems (MF, MD, PL, JP), p. 6.
- DATE-2013-DaneshtalabEPT #interface #manycore #named #network
- CARS: congestion-aware request scheduler for network interfaces in NoC-based manycore systems (MD, ME, JP, HT), pp. 1048–1051.
- DATE-2013-EbrahimiDP #3d #algorithm #fault tolerance #using
- Fault-tolerant routing algorithm for 3D NoC using Hamiltonian path strategy (ME, MD, JP), pp. 1601–1604.
- PDP-2013-EbrahimiCDPLT #3d #adaptation #algorithm #named
- DyXYZ: Fully Adaptive Routing Algorithm for 3D NoCs (ME, XC, MD, JP, PL, HT), pp. 499–503.
- PDP-2013-EbrahimiDP #algorithm #fault tolerance #manycore #performance
- High Performance Fault-Tolerant Routing Algorithm for NoC-Based Many-Core Systems (ME, MD, JP), pp. 462–469.
- PDP-2013-MoosaviRLPT #3d #communication #multi #network #performance #protocol #using
- Enhancing Performance of 3D Interconnection Networks using Efficient Multicast Communication Protocol (SRM, AMR, PL, JP, HT), pp. 294–301.
- DATE-2012-EbrahimiDLPT #algorithm #network
- CATRA- congestion aware trapezoid-based routing algorithm for on-chip networks (ME, MD, PL, JP, HT), pp. 320–325.
- PDP-2012-EbrahimiDLPT #adaptation #named #network
- LEAR — A Low-Weight and Highly Adaptive Routing Method for Distributing Congestions in On-chip Networks (ME, MD, PL, JP, HT), pp. 520–524.
- PDP-2012-RahmaniLPT #3d #architecture #performance
- An Efficient Hybridization Scheme for Stacked Mesh 3D NoC Architecture (AMR, PL, JP, HT), pp. 507–514.
- PDP-2011-RahmaniLLPT #3d #architecture #communication #reliability
- A Stacked Mesh 3D NoC Architecture Enabling Congestion-Aware and Reliable Inter-layer Communication (AMR, KL, PL, JP, HT), pp. 423–430.
- PDP-2010-EbrahimiDLPT #architecture #interface #network #using
- A High-Performance Network Interface Architecture for NoCs Using Reorder Buffer Sharing (ME, MD, PL, JP, HT), pp. 546–550.
- DATE-2009-EbrahimiDNMAPT #multi #protocol
- An efficent dynamic multicast routing protocol for distributing traffic in NOCs (ME, MD, MHN, SM, AAK, JP, HT), pp. 1064–1069.
- IFM-2004-SeceleanuP #approach #design #uml
- Constituent Elements of a Correctness-Preserving UML Design Approach (TS, JP), pp. 227–246.