NDA: Near-DRAM acceleration architecture leveraging commodity DRAM devices and standard memory modules A Farmahini-Farahani, JH Ahn, K Morrow, NS Kim 2015 IEEE 21st International Symposium on High Performance Computer …, 2015 | 348 | 2015 |
The gem5 simulator: Version 20.0+ J Lowe-Power, AM Ahmad, A Akram, M Alian, R Amslinger, M Andreozzi, ... arXiv preprint arXiv:2007.03152, 2020 | 256 | 2020 |
Modular design of high-throughput, low-latency sorting units A Farmahini-Farahani, HJ Duwe III, MJ Schulte, K Compton IEEE Transactions on Computers 62 (7), 1389-1402, 2012 | 77 | 2012 |
DRAMA: An architecture for accelerated processing near memory A Farmahini-Farahani, JH Ahn, K Morrow, NS Kim IEEE Computer Architecture Letters 14 (1), 26-29, 2014 | 64 | 2014 |
Regmutex: Inter-warp gpu register time-sharing F Khorasani, HA Esfeden, A Farmahini-Farahani, N Jayasena, V Sarkar 2018 ACM/IEEE 45th Annual International Symposium on Computer Architecture …, 2018 | 52 | 2018 |
The MP7 and CTP-6: multi-hundred Gbps processing boards for calorimeter trigger upgrades at CMS K Compton, S Dasu, A Farmahini-Farahani, S Fayer, R Fobes, R Frazier, ... Journal of Instrumentation 7 (12), C12024, 2012 | 46 | 2012 |
Parallel scalable hardware implementation of asynchronous discrete particle swarm optimization A Farmahini-Farahani, S Vakili, SM Fakhraie, S Safari, C Lucas Engineering Applications of Artificial Intelligence 23 (2), 177-187, 2010 | 41 | 2010 |
SOPC-based architecture for discrete particle swarm optimization A Farmahini-Farahani, SM Fakhraie, S Safari 2007 14th IEEE international conference on electronics, circuits and systems …, 2007 | 36 | 2007 |
An efficient hybrid swarm intelligence-gradient optimization method for complex time Green's functions of multilayer media M Ghaffari-Miab, A Farmahini-Farahani, R Faraji-Dana, C Lucas Progress In Electromagnetics Research 77, 181-192, 2007 | 35 | 2007 |
Process variation-aware workload partitioning algorithms for GPUs supporting spatial-multitasking P Aguilera, J Lee, A Farmahini-Farahani, K Morrow, M Schulte, NS Kim 2014 Design, Automation & Test in Europe Conference & Exhibition (DATE), 1-6, 2014 | 31 | 2014 |
Scalable architecture for on-chip neural network training using swarm intelligence A Farmahini-Farahani, SM Fakhraie, S Safari Proceedings of the conference on Design, automation and test in Europe, 1340 …, 2008 | 30 | 2008 |
HW/SW partitioning using discrete particle swarm A Farmahini-Farahani, M Kamal, SM Fakhraie, S Safari Proceedings of the 17th ACM Great Lakes symposium on VLSI, 359-364, 2007 | 29 | 2007 |
Locality-aware and sharing-aware cache coherence for collections of processors AF Farahani, N Jayasena US Patent 11,119,923, 2021 | 28 | 2021 |
Near-DRAM acceleration with single-ISA heterogeneous processing in standard memory modules H Asghari-Moghaddam, A Farmahini-Farahani, K Morrow, JH Ahn, ... IEEE Micro 36 (1), 24-34, 2016 | 25 | 2016 |
FPGA design analysis of the clustering algorithm for the CERN large hadron collider A Gregerson, A Farmahini-Farahani, B Buchli, S Naumov, M Bachtis, ... 2009 17th IEEE Symposium on Field Programmable Custom Computing Machines, 19-26, 2009 | 20 | 2009 |
Modular high-throughput and low-latency sorting units for FPGAs in the large hadron collider A Farmahini-Farahani, A Gregerson, M Schulte, K Compton 2011 IEEE 9th Symposium on Application Specific Processors (SASP), 38-45, 2011 | 18 | 2011 |
Challenges of high-capacity dram stacks and potential directions A Farmahini-Farahani, S Gurumurthi, G Loh, M Ignatowski Proceedings of the Workshop on Memory Centric High Performance Computing, 4-13, 2018 | 16 | 2018 |
Parallel-Genetic-Algorithm-Based HW/SW Partitioning A Farmahini-Farahani, M Kamal, M Salmani-Jelodar Parallel Computing in Electrical Engineering, 2006. PAR ELEC 2006 …, 2006 | 15* | 2006 |
The MP7 and CTP-6: Multi-hundred GBPS processing boards for calorimeter trigger upgrades at CMS, 2012 K Compton, S Dasu, A Farmahini-Farahani, S Fayer, R Fobes, R Frazier JINSTxg 7, C12024, 0 | 11 | |
Dynamic cache bypassing AF Farahani, DA Roberts US Patent 10,599,578, 2020 | 10 | 2020 |