Travelled to:
1 × Canada
1 × The Netherlands
1 × United Kingdom
14 × USA
2 × Germany
5 × France
Collaborated with:
A.Raghunathan V.D.Agrawal S.Wang K.Roy S.Dey W.Wei V.K.Chippa C.Li M.Sankaradass S.Venkataramani M.S.Hsiao M.Becchi V.T.Ravi M.C.Chao K.Cheng J.Henkel G.Coviello S.Cadambi R.Phull K.Rao J.Thoguluva K.J.Balakrishnan X.Liu A.Balakrishnan S.Kanjilal M.L.Bushnell F.Ahmad T.N.Vijaykumar J.Liu N.Ravi M.T.Kandemir G.Agrawal S.Banerjee R.K.Roy D.K.Pradhan M.Potkonjak S.G.Rothweiler A.Rezaei F.Müller D.Mohapatra J.Xu W.Wolf T.Lv H.Lekatsas V.Jakkula K.Sajjapongse I.Graves A.M.Procter D.Arora S.Ravi N.K.Jha
Talks about:
test (7) effici (6) use (6) comput (5) base (5) unknown (4) softwar (4) hardwar (4) delay (4) scan (4)
Person: Srimat T. Chakradhar
DBLP: Chakradhar:Srimat_T=
Contributed to:
Wrote 30 papers:
- DAC-2015-VenkataramaniCR #approximate #performance
- Approximate computing and the quest for computing efficiency (SV, STC, KR, AR), p. 6.
- DATE-2015-VenkataramaniCR #approximate
- Computing approximately, and efficiently (SV, STC, KR, AR), pp. 748–751.
- HPDC-2014-RezaeiCLCM #manycore #named
- Snapify: capturing snapshots of offload applications on xeon phi manycore processors (AR, GC, CHL, STC, FM), pp. 1–12.
- DAC-2013-ChippaCRR #analysis #approximate
- Analysis and characterization of inherent application resilience for approximate computing (VKC, STC, KR, AR), p. 9.
- HPDC-2013-CadambiCLPRSC #middleware #multi #named #performance #reliability
- COSMIC: middleware for high performance and reliable multiprocessing on xeon phi coprocessors (SC, GC, CHL, RP, KR, MS, STC), pp. 215–226.
- ASPLOS-2012-AhmadCRV #clustering #named #optimisation #pipes and filters
- Tarazu: optimizing MapReduce on heterogeneous clusters (FA, STC, AR, TNV), pp. 61–74.
- CGO-2012-LiuRCK #named #optimisation #pipes and filters #towards
- Panacea: towards holistic optimization of MapReduce applications (JL, NR, STC, MTK), pp. 33–43.
- HPDC-2012-BecchiSGPRC #clustering #memory management #multitenancy #runtime
- A virtual memory based runtime to support multi-tenancy in clusters with GPUs (MB, KS, IG, AMP, VTR, STC), pp. 97–108.
- HPDC-2012-PhullLRCC #clustering #resource management
- Interference-driven resource management for GPU-based heterogeneous clusters (RP, CHL, KR, SC, STC), pp. 109–120.
- DAC-2011-ChippaRRC #scalability #trade-off
- Dynamic effort scaling: managing the quality-efficiency tradeoff (VKC, AR, KR, STC), pp. 603–608.
- HPDC-2011-RaviBAC #framework #gpu #runtime
- Supporting GPU sharing in cloud environments with a transparent runtime consolidation framework (VTR, MB, GA, STC), pp. 217–228.
- DAC-2010-ChakradharR #hardware #parallel
- Best-effort computing: re-thinking parallel software and hardware (STC, AR), pp. 865–870.
- DAC-2010-ChippaMRRC #algorithm #design #energy #hardware #performance #scalability
- Scalable effort hardware design: exploiting algorithmic resilience for energy efficiency (VKC, DM, AR, KR, STC), pp. 555–560.
- DATE-2008-ThoguluvaRC #architecture #performance #programmable #security #using
- Efficient Software Architecture for IPSec Acceleration Using a Programmable Security Processor (JT, AR, STC), pp. 1148–1153.
- DATE-2007-WangWC
- Unknown blocking scheme for low control data volume and high observability (SW, WW, STC), pp. 33–38.
- DAC-2006-AroraRRSJC #architecture #mobile #multi #security
- Software architecture exploration for high-performance security processing on a multiprocessor mobile SoC (DA, AR, SR, MS, NKJ, STC), pp. 496–501.
- DAC-2006-ChaoCWCW #analysis #using
- Unknown-tolerance analysis and test-quality control for test response compaction using space compactors (MCTC, KTC, SW, STC, WW), pp. 1083–1088.
- DATE-2006-ChaoWCWC #using
- Coverage loss by using space compactors in presence of unknown values (MCTC, SW, STC, WW, KTC), pp. 1053–1054.
- DATE-2006-WangBC #performance #using
- Efficient unknown blocking using LFSR reseeding (SW, KJB, STC), pp. 1051–1052.
- DATE-v2-2004-WangLC #fault #hardware #hybrid #testing
- Hybrid Delay Scan: A Low Hardware Overhead Scan-Based Delay Test Technique for High Fault Coverage and Compact Test Sets (SW, XL, STC), pp. 1296–1301.
- DATE-v2-2004-XuWHCL #case study #design #embedded #video
- A Case Study in Networks-on-Chip Design for Embedded Video (JX, WW, JH, STC, TL), pp. 770–777.
- DAC-2003-LekatsasHCJS #agile #framework #hardware #named #platform #prototype
- CoCo: a hardware/software platform for rapid prototyping of code compression technologies (HL, JH, STC, VJ, MS), pp. 306–311.
- DATE-1998-HsiaoC #performance #sequence
- State Relaxation Based Subsequence Removal for Fast Static Compaction in Sequential Circuits (MSH, STC), pp. 577–582.
- DAC-1994-ChakradharBA #algorithm
- An Exact Algorithm for Selecting Partial Scan Flip-Flops (STC, AB, VDA), pp. 81–86.
- DAC-1994-ChakradharD
- Resynthesis and Retiming for Optimum Partial Scan (STC, SD), pp. 87–93.
- EDAC-1994-BanerjeeRCP #graph transformation
- Signal Transition Graph Transformations for Initializability (SB, RKR, STC, DKP), p. 670.
- DAC-1993-ChakradharDPR #optimisation #using
- Sequential Circuit Delay optimization Using Global Path Delays (STC, SD, MP, SGR), pp. 483–489.
- DAC-1992-ChakradharKA #fault tolerance #finite #state machine #synthesis
- Finite State Machine Synthesis with Fault Tolerant Test Function (STC, SK, VDA), pp. 562–567.
- DAC-1991-ChakradharA #algorithm #generative #testing #transitive
- A Transitive Closure Based Algorithm for Test Generation (STC, VDA), pp. 353–358.
- DAC-1990-ChakradharAB #automation #generative #polynomial #programming #testing #using
- Automatic Test Generation Using Quadratic 0-1 Programming (STC, VDA, MLB), pp. 654–659.