default search action
Israel Koren
Person information
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [j84]Wang Xu, Israel Koren:
A Scalable Wear Leveling Technique for Phase Change Memory. ACM Trans. Storage 20(1): 3:1-3:26 (2024) - 2023
- [c154]Glenn H. Chapman, Klinsmann J. Coelho Silva Meneses, Linda Wu, Israel Koren, Zahava Koren:
Image Degradation in Time Due to Interacting Hot Pixels. DFT 2023: 1-6 - 2022
- [c153]Glenn H. Chapman, Klinsmann J. Coelho Silva Meneses, Israel Koren, Zahava Koren:
Image Degradation due to Interacting Adjacent Hot Pixels. DFT 2022: 1-6 - 2021
- [j83]Shikang Xu, Israel Koren, C. Mani Krishna:
Adaptive workload adjustment for cyber-physical systems using deep reinforcement learning. Sustain. Comput. Informatics Syst. 30: 100525 (2021) - [c152]Glenn H. Chapman, Simone Neufeld, Klinsmann J. Coelho Silva Meneses, Israel Koren, Zahava Koren:
Dependence of SEUs in Digital Cameras on Pixel size and Elevation. DFT 2021: 1-4 - 2020
- [j82]Shikang Xu, Israel Koren, C. Mani Krishna:
Enhancing dependability and energy efficiency of cyber-physical systems by dynamic actuator derating. Sustain. Comput. Informatics Syst. 28: 100411 (2020) - [j81]Shikang Xu, Israel Koren, C. M. Krishna:
Thermal Aware Task Scheduling for Enhanced Cyber-Physical Systems Sustainability. IEEE Trans. Sustain. Comput. 5(4): 581-593 (2020) - [c151]Leandro Santiago de Araújo, Leandro A. J. Marzulo, Tiago A. O. Alves, Felipe M. G. França, Israel Koren, Sandip Kundu:
Building a portable deeply-nested implicit information flow tracking. CF 2020: 150-157 - [c150]Glenn H. Chapman, Rohan Thomas, Klinsmann J. Coelho Silva Meneses, Ruoyi Zhao, Israel Koren, Zahava Koren:
Using digital imagers to characterize the dependence of energy and area distributions of SEUs on elevation. DFT 2020: 1-4
2010 – 2019
- 2019
- [j80]Nirupama Ravi, C. Mani Krishna, Israel Koren:
Enhancing Vehicular Anonymity in ITS: A New Scheme for Mix Zones and Their Placement. IEEE Trans. Veh. Technol. 68(11): 10372-10381 (2019) - [c149]Wang Xu, Israel Koren:
Designing a secure DRAM+NVM hybrid memory module. CF 2019: 251-255 - [c148]Glenn H. Chapman, Rohan Thomas, Klinsmann J. Coelho Silva Meneses, Bifei Huang, Hao Yang, Israel Koren, Zahava Koren:
Detecting SEUs in Noisy Digital Imagers with small pixels. DFT 2019: 1-6 - [c147]Glenn H. Chapman, Rohan Thomas, Klinsmann J. Coelho Silva Meneses, Israel Koren, Zahava Koren:
Image degradation from hot pixel defects with pixel size shrinkage. IMSE 2019: 1-7 - 2018
- [c146]Anderson Luiz Sartor, Arthur Francisco Lorenzon, Sandip Kundu, Israel Koren, Antonio C. S. Beck:
Adaptive and polymorphic VLIW processor to optimize fault tolerance, energy consumption, and performance. CF 2018: 54-61 - [c145]Glenn H. Chapman, Rohan Thomas, Klinsmann J. Coelho Silva Meneses, Israel Koren, Zahava Koren:
Analysis of Single Event Upsets Based on Digital Cameras with Very Small Pixels. DFT 2018: 1-6 - [c144]Glenn H. Chapman, Rohan Thomas, Klinsmann J. Coelho Silva Meneses, Parham Purbakht, Israel Koren, Zahava Koren:
Exploring Hot Pixel Characteristics for 7 to 1.3 micron Pixels. IMSE 2018: 1-6 - [c143]Shikang Xu, Israel Koren, C. M. Krishna:
Energy and Dependability Enhancement by Dynamic Actuator Derating in Cyber-Physical Systems. IGSC 2018: 1-8 - [c142]Israel Koren:
Detecting and counteracting benign faults and malicious attacks in cyber physical systems. MECO 2018: 2 - [c141]Eduardo H. M. Cruz, Matthias Diener, Matheus S. Serpa, Philippe Olivier Alexandre Navaux, Laércio Lima Pilla, Israel Koren:
Improving Communication and Load Balancing with Thread Mapping in Manycore Systems. PDP 2018: 93-100 - [e10]John Goodacre, Mikel Luján, Giovanni Agosta, Alessandro Barenghi, Israel Koren, Gerardo Pelosi:
Proceedings of the Fifth Workshop on Cryptography and Security in Computing Systems, CS2 2018, Manchester, United Kingdom, January 24, 2018. ACM 2018, ISBN 978-1-4503-6374-7 [contents] - 2017
- [j79]Matthias Diener, Eduardo H. M. Cruz, Marco A. Z. Alves, Philippe O. A. Navaux, Israel Koren:
Affinity-Based Thread and Data Mapping in Shared Memory Systems. ACM Comput. Surv. 49(4): 64:1-64:38 (2017) - [j78]C. M. Krishna, Israel Koren:
Thermal-aware management techniques for cyber-physical systems. Sustain. Comput. Informatics Syst. 15: 39-51 (2017) - [j77]Ye Xu, Israel Koren, C. Mani Krishna:
AdaFT: A Framework for Adaptive Fault Tolerance for Cyber-Physical Systems. ACM Trans. Embed. Comput. Syst. 16(3): 79:1-79:25 (2017) - [c140]Francis B. Moreira, Matthias Diener, Philippe O. A. Navaux, Israel Koren:
Data mining the memory access stream to detect anomalous application behavior. Conf. Computing Frontiers 2017: 45-52 - [c139]Daniel Oliveira, Vinicius Fratin, Philippe Olivier Alexandre Navaux, Israel Koren, Paolo Rech:
CAROL-FI: an Efficient Fault-Injection Tool for Vulnerability Evaluation of Modern HPC Parallel Accelerators. Conf. Computing Frontiers 2017: 295-298 - [c138]Glenn H. Chapman, Parham Purbakht, Peter Le, Israel Koren, Zahava Koren:
Exploring soft errors (SEUs) with digital imager pixels ranging from 7 to 1.3 μm. DFT 2017: 1-4 - [c137]Glenn H. Chapman, Rahul Thomas, Israel Koren, Zahava Koren:
Hot Pixel Behavior as Pixel Size Reduces to 1 micron. IMSE 2017: 39-45 - [c136]Israel Koren:
Keynote speech: IGSC 2017: Green computing through adaptive multi-core architectures. IGSC 2017: 1 - [c135]Daniel Oliveira, Laércio Lima Pilla, Nathan DeBardeleben, Sean Blanchard, Heather Quinn, Israel Koren, Philippe O. A. Navaux, Paolo Rech:
Experimental and analytical study of Xeon Phi reliability. SC 2017: 28 - 2016
- [j76]Mayank Chhablani, Israel Koren, C. M. Krishna:
Online Inertia-Based Temperature Estimation for Reliability Enhancement. J. Low Power Electron. 12(3): 159-171 (2016) - [j75]Francis B. Moreira, Marco A. Z. Alves, Matthias Diener, Philippe O. A. Navaux, Israel Koren:
A dynamic block-level execution profiler. Parallel Comput. 54: 15-28 (2016) - [j74]Sudarshan Srinivasan, Nithesh kurella, Israel Koren, Sandip Kundu:
Exploring Heterogeneity within a Core for Improved Power Efficiency. IEEE Trans. Parallel Distributed Syst. 27(4): 1057-1069 (2016) - [c134]Shmuel Wimer, Israel Koren:
Energy efficient deeply fused dot-product multiplication architecture. ASAP 2016: 115-122 - [c133]Glenn H. Chapman, Rahul Thomas, Rohan Thomas, Israel Koren, Zahava Koren:
Experimental study and analysis of soft and permanent errors in digital cameras. DFT 2016: 11-14 - [c132]Glenn H. Chapman, Rahul Thomas, Rohan Thomas, Klinsmann J. Coelho Silva Meneses, Tommy Q. Yang, Israel Koren, Zahava Koren:
Increases in Hot Pixel Development Rates for Small Digital Pixel Sizes. IMSE 2016: 1-6 - [c131]Sudarshan Srinivasan, Israel Koren, Sandip Kundu:
Improving performance per Watt of non-monotonic Multicore Processors via bottleneck-based online program phase classification. ICCD 2016: 528-535 - [c130]Sudarshan Srinivasan, Nithesh kurella, Israel Koren, Sandip Kundu:
Dynamic Reconfiguration vs. DVFS: A Comparative Study on Power Efficiency of Processors. VLSID 2016: 563-564 - [e9]Martin Palkovic, Giovanni Agosta, Alessandro Barenghi, Israel Koren, Gerardo Pelosi:
Proceedings of the Third Workshop on Cryptography and Security in Computing Systems, CS2@HiPEAC, Prague, Czech Republic, January 20, 2016. ACM 2016, ISBN 978-1-4503-4065-6 [contents] - 2015
- [j73]Rance Rodrigues, Israel Koren, Sandip Kundu:
Does the Sharing of Execution Units Improve Performance/Power of Multicores? ACM Trans. Embed. Comput. Syst. 14(1): 17:1-17:24 (2015) - [c129]Glenn H. Chapman, Rahul Thomas, Rohan Thomas, Klinsmann J. Coelho Silva Meneses, Tommy Q. Yang, Israel Koren, Zahava Koren:
Single Event Upsets and Hot Pixels in digital imagers. DFTS 2015: 41-46 - [c128]Glenn H. Chapman, Rahul Thomas, Rohit Thomas, Zahava Koren, Israel Koren:
Enhanced correction methods for high density hot pixel defects in digital imagers. IMSE 2015: 94030T - [c127]Shikang Xu, Israel Koren, C. M. Krishna:
Improving processor lifespan and energy consumption using DVFS based on ILP monitoring. IGSC 2015: 1-6 - [c126]Sudarshan Srinivasan, Israel Koren, Sandip Kundu:
Online mechanism for reliability and power-efficiency management of a dynamically reconfigurable core. ICCD 2015: 327-334 - [e8]Andy D. Pimentel, Stephan Wong, Gerardo Pelosi, Israel Koren, Giovanni Agosta, Alessandro Barenghi:
Proceedings of the Second Workshop on Cryptography and Security in Computing Systems, CS2@HiPEAC 2015, Amsterdam, Netherlands, January 19-21, 2015. ACM 2015, ISBN 978-1-4503-3187-6 [contents] - 2014
- [j72]Shmuel Wimer, Amir Albeck, Israel Koren:
A low energy dual-mode adder. Comput. Electr. Eng. 40(5): 1524-1537 (2014) - [j71]R. C. Ravindran, C. Mani Krishna, Israel Koren, Zahava Koren:
Scheduling imprecise task graphs for real-time applications. Int. J. Embed. Syst. 6(1): 73-85 (2014) - [j70]Alessandro Barenghi, Cédric Hocquet, David Bol, François-Xavier Standaert, Francesco Regazzoni, Israel Koren:
A Combined Design-Time/Test-Time Study of the Vulnerability of Sub-Threshold Devices to Low Voltage Fault Attacks. IEEE Trans. Emerg. Top. Comput. 2(2): 107-118 (2014) - [j69]Shmuel Wimer, Israel Koren:
Design Flow for Flip-Flop Grouping in Data-Driven Clock Gating. IEEE Trans. Very Large Scale Integr. Syst. 22(4): 771-778 (2014) - [c125]Sudarshan Srinivasan, Nithesh kurella, Israel Koren, Rance Rodrigues, Sandip Kundu:
A runtime support mechanism for fast mode switching of a self-morphing core for power efficiency. PACT 2014: 491-492 - [c124]Glenn H. Chapman, Rohit Thomas, Rahul Thomas, Israel Koren, Zahava Koren:
Improved correction for hot pixels in digital imagers. DFT 2014: 116-121 - [c123]Glenn H. Chapman, Rohit Thomas, Zahava Koren, Israel Koren:
Correcting high-density hot pixel defects in digital imagers. IMSE 2014: 90220G - [c122]Arunachalam Annamalai, Rance Rodrigues, Israel Koren, Sandip Kundu:
Reducing Energy per Instruction via Dynamic Resource Allocation and Voltage and Frequency Adaptation in Asymmetric Multicores. ISVLSI 2014: 436-441 - [c121]Francis B. Moreira, Marco A. Z. Alves, Israel Koren:
Profiling and Reducing Micro-Architecture Bottlenecks at the Hardware Level. SBAC-PAD 2014: 222-229 - [c120]Rance Rodrigues, Israel Koren, Sandip Kundu:
Performance and Power Benefits of Sharing Execution Units between a High Performance Core and a Low Power Core. VLSID 2014: 204-209 - [e7]Jens Knoop, Valentina Salapura, Israel Koren, Gerardo Pelosi:
Proceedings of the First Workshop on Cryptography and Security in Computing Systems, CS2@HiPEAC 2014, Vienna, Austria, January 20, 2014. ACM 2014, ISBN 978-1-4503-2484-7 [contents] - 2013
- [j68]Nitin Prakash, Israel Koren, C. Mani Krishna:
Low Cost Dynamic Architecture Adaptation Schemes for Drowsy Cache Management. J. Low Power Electron. 9(4): 373-388 (2013) - [j67]Rance Rodrigues, Arunachalam Annamalai, Israel Koren, Sandip Kundu:
A Study on the Use of Performance Counters to Estimate Power in Microprocessors. IEEE Trans. Circuits Syst. II Express Briefs 60-II(12): 882-886 (2013) - [c119]Arunachalam Annamalai, Rance Rodrigues, Israel Koren, Sandip Kundu:
An opportunistic prediction-based thread scheduling to maximize throughput/watt in AMPs. PACT 2013: 63-72 - [c118]Glenn H. Chapman, Rohit Thomas, Israel Koren, Zahava Koren:
Improved image accuracy in Hot Pixel degraded digital cameras. DFTS 2013: 172-177 - [c117]Glenn H. Chapman, Rohit Thomas, Zahava Koren, Israel Koren:
Empirical formula for rates of hot pixel defects based on pixel size, sensor area, and ISO. Sensors, Cameras, and Systems for Industrial and Scientific Applications 2013: 86590C - [c116]Paolo Maistri, Sébastien Tiran, Philippe Maurine, Israel Koren, Régis Leveugle:
An evaluation of an AES implementation protected against EM analysis. ACM Great Lakes Symposium on VLSI 2013: 317-318 - [c115]Sudarshan Srinivasan, Rance Rodrigues, Arunachalam Annamalai, Israel Koren, Sandip Kundu:
On dynamic polymorphing of a superscalar core for improving energy efficiency. ICCD 2013: 495-498 - [c114]C. Mani Krishna, Israel Koren:
Adaptive fault-tolerance fault-tolerance for cyber-physical systems. ICNC 2013: 310-314 - [c113]Sudarshan Srinivasan, Rance Rodrigues, Arunachalam Annamalai, Israel Koren, Sandip Kundu:
A study on polymorphing superscalar processor dynamically to improve power efficiency. ISVLSI 2013: 46-51 - [c112]Paolo Maistri, Sébastien Tiran, Philippe Maurine, Israel Koren, Régis Leveugle:
Countermeasures against EM analysis for a secured FPGA-based AES implementation. ReConFig 2013: 1-6 - 2012
- [j66]Aswin Sreedhar, Sandip Kundu, Israel Koren:
On Reliability Trojan Injection and Detection. J. Low Power Electron. 8(5): 674-683 (2012) - [j65]Alessandro Barenghi, Luca Breveglieri, Israel Koren, David Naccache:
Fault Injection Attacks on Cryptographic Devices: Theory, Practice, and Countermeasures. Proc. IEEE 100(11): 3056-3076 (2012) - [j64]Israel Koren, Daniel Mossé:
Special Issue: Selected papers from the 2011 IEEE International Green Computing Conference (IGCC 2011). Sustain. Comput. Informatics Syst. 2(2): 57 (2012) - [j63]Rance Rodrigues, Arunachalam Annamalai, Israel Koren, Sandip Kundu:
Improving performance per watt of asymmetric multi-core processors via online program phase classification and adaptive core morphing. ACM Trans. Design Autom. Electr. Syst. 18(1): 5:1-5:23 (2012) - [j62]Shmuel Wimer, Israel Koren:
The Optimal Fan-Out of Clock Network for Power Minimization by Adaptive Gating. IEEE Trans. Very Large Scale Integr. Syst. 20(10): 1772-1780 (2012) - [c111]Glenn H. Chapman, Rohit Thomas, Israel Koren, Zahava Koren:
Relating digital imager defect rates to pixel size, sensor area and ISO. DFT 2012: 164-169 - [c110]Rance Rodrigues, Israel Koren, Sandip Kundu:
A mechanism to verify cache coherence transactions in multicore systems. DFT 2012: 211-216 - [c109]Glenn H. Chapman, Jenny Leung, Rohit Thomas, Ana I. L. Namburete, Zahava Koren, Israel Koren:
Projecting the rate of in-field pixel defects based on pixel size, sensor area, and ISO. Sensors, Cameras, and Systems for Industrial and Scientific Applications 2012: 82980E - [c108]Huaping Wang, Israel Koren, C. Mani Krishna:
Runtime architecture adaptation for energy management in embedded real-time systems. IGCC 2012: 1-9 - [c107]Abhinna Jain, C. M. Krishna, Israel Koren, Zahava Koren:
Cost Functions for Scheduling Tasks in Cyber-physical Systems. ICINCO (1) 2012: 412-421 - [c106]Ye Xu, Israel Koren, C. M. Krishna:
A Study of the Impact of Computational Delays in Missile Interception Systems. ICINCO (1) 2012: 585-588 - [c105]Glenn H. Chapman, Israel Koren, Zahava Koren:
Do more camera pixels result in a better picture? IOLTS 2012: 73-78 - [c104]Arunachalam Annamalai, Rance Rodrigues, Israel Koren, Sandip Kundu:
Dynamic Thread Scheduling in Asymmetric Multicores to Maximize Performance-per-Watt. IPDPS Workshops 2012: 964-971 - [c103]Rance Rodrigues, Arunachalam Annamalai, Israel Koren, Sandip Kundu:
Scalable Thread Scheduling in Asymmetric Multicores for Power Efficiency. SBAC-PAD 2012: 59-66 - [p1]Francesco Regazzoni, Luca Breveglieri, Paolo Ienne, Israel Koren:
Interaction Between Fault Attack Countermeasures and the Resistance Against Power Analysis Attacks. Fault Analysis in Cryptography 2012: 257-272 - 2011
- [j61]Israel Koren, C. M. Krishna:
Temperature-aware computing. Sustain. Comput. Informatics Syst. 1(1): 46-56 (2011) - [j60]Huaping Wang, Israel Koren, C. Mani Krishna:
Utilization-Based Resource Partitioning for Power-Performance Efficiency in SMT Processors. IEEE Trans. Parallel Distributed Syst. 22(7): 1150-1163 (2011) - [c102]Rance Rodrigues, Arunachalam Annamalai, Israel Koren, Sandip Kundu, Omer Khan:
Performance Per Watt Benefits of Dynamic Core Morphing in Asymmetric Multicores. PACT 2011: 121-130 - [c101]Rance Rodrigues, Israel Koren, Sandip Kundu:
An Architecture to Enable Lifetime Full Chip Testability in Chip Multiprocessors. PACT 2011: 219 - [c100]Md. Muwyid U. Khan, Pritish Narayanan, Priyamvada Vijayakumar, Israel Koren, C. Mani Krishna, Csaba Andras Moritz:
Biased Voting for Improved Yield in Nanoscale Fabrics. DFT 2011: 79-85 - [c99]Rance Rodrigues, Israel Koren, Sandip Kundu:
An Architecture to Enable Life Cycle Testing in CMPs. DFT 2011: 341-348 - [c98]Glenn H. Chapman, Jenny Leung, Ana I. L. Namburete, Israel Koren, Zahava Koren:
Predicting Pixel Defect Rates Based on Image Sensor Parameters. DFT 2011: 408-416 - [c97]Glenn H. Chapman, Jenny Leung, Rahul Thomas, Zahava Koren, Israel Koren:
Tradeoffs in imager design parameters for sensor reliability. Sensors, Cameras, and Systems for Industrial, Scientific, and Consumer Applications 2011: 78750I - [c96]Pritish Narayanan, Jorge Kina, Pavan Panchapakeshan, Priyamvada Vijayakumar, Kyeong-Sik Shin, Mostafizur Rahman, Michael Leuchtenburg, Israel Koren, Chi On Chui, Csaba Andras Moritz:
Nanoscale Application Specific Integrated Circuits. NANOARCH 2011: 99-106 - [c95]Priyamvada Vijayakumar, Pritish Narayanan, Israel Koren, C. Mani Krishna, Csaba Andras Moritz:
Impact of nanomanufacturing flow on systematic yield losses in nanoscale fabrics. NANOARCH 2011: 181-188 - [c94]Alessandro Barenghi, Cédric Hocquet, David Bol, François-Xavier Standaert, Francesco Regazzoni, Israel Koren:
Exploring the Feasibility of Low Cost Fault Injection Attacks on Sub-threshold Devices through an Example of a 65nm AES Implementation. RFIDSec 2011: 48-60 - [e6]Luca Breveglieri, Sylvain Guilley, Israel Koren, David Naccache, Junko Takahashi:
2011 Workshop on Fault Diagnosis and Tolerance in Cryptography, FDTC 2011, Tokyo, Japan, September 29, 2011. IEEE Computer Society 2011, ISBN 978-1-4577-1463-4 [contents] - 2010
- [c93]Alessandro Barenghi, Luca Breveglieri, Israel Koren, Gerardo Pelosi, Francesco Regazzoni:
Countermeasures against fault attacks on software implemented AES: effectiveness and cost. WESS 2010: 7 - [c92]Glenn H. Chapman, Jenny Leung, Israel Koren, Zahava Koren:
Tradeoffs in Imager Design with Respect to Pixel Defect Rates. DFT 2010: 231-239 - [c91]Priyamvada Vijayakumar, Pritish Narayanan, Israel Koren, C. Mani Krishna, Csaba Andras Moritz:
Incorporating Heterogeneous Redundancy in a Nanoprocessor for Improved Yield and Performance. DFT 2010: 273-279 - [c90]Anup Das, Rance Rodrigues, Israel Koren, Sandip Kundu:
A study on performance benefits of core morphing in an asymmetric multicore processor. ICCD 2010: 17-22 - [c89]Prasad Shabadi, Alexander Khitun, Pritish Narayanan, Mingqiang Bao, Israel Koren, Kang L. Wang, Csaba Andras Moritz:
Towards logic functions as the device. NANOARCH 2010: 11-16 - [e5]Luca Breveglieri, Marc Joye, Israel Koren, David Naccache, Ingrid Verbauwhede:
2010 Workshop on Fault Diagnosis and Tolerance in Cryptography, FDTC 2010, Santa Barbara, California, USA, 21 August 2010. IEEE Computer Society 2010, ISBN 978-0-7695-4169-3 [contents]
2000 – 2009
- 2009
- [j59]Srikanth Sundaresan, Israel Koren, Zahava Koren, C. Mani Krishna:
Event-driven adaptive duty-cycling in sensor networks. Int. J. Sens. Networks 6(2): 89-100 (2009) - [c88]Jenny Leung, Glenn H. Chapman, Israel Koren, Zahava Koren:
Characterization of Gain Enhanced In-Field Defects in Digital Imagers. DFT 2009: 155-163 - [c87]Jenny Leung, Glenn H. Chapman, Zahava Koren, Israel Koren:
Statistical identification and analysis of defect development in digital imagers. Digital Photography 2009: 72500 - [e4]Luca Breveglieri, Israel Koren, David Naccache, Elisabeth Oswald, Jean-Pierre Seifert:
Sixth International Workshop on Fault Diagnosis and Tolerance in Cryptography, FDTC 2009, Lausanne, Switzerland, 6 September 2009. IEEE Computer Society 2009, ISBN 978-0-7695-3824-2 [contents] - 2008
- [c86]Huaping Wang, Israel Koren, C. Mani Krishna:
An adaptive resource partitioning algorithm for SMT processors. PACT 2008: 230-239 - [c85]Francesco Regazzoni, Thomas Eisenbarth, Luca Breveglieri, Paolo Ienne, Israel Koren:
Can Knowledge Regarding the Presence of Countermeasures Against Fault Attacks Simplify Power Attacks on Cryptographic Devices?. DFT 2008: 202-210 - [c84]Jenny Leung, Glenn H. Chapman, Israel Koren, Zahava Koren:
Automatic Detection of In-field eld Defect Growth in Image Sensors. DFT 2008: 305-313 - [e3]Luca Breveglieri, Shay Gueron, Israel Koren, David Naccache, Jean-Pierre Seifert:
Fifth International Workshop on Fault Diagnosis and Tolerance in Cryptography, 2008, FDTC 2008, Washington, DC, USA, 10 August 2008. IEEE Computer Society 2008, ISBN 978-0-7695-3314-8 [contents] - 2007
- [j58]Yongkui Han, Israel Koren, C. Mani Krishna:
TILTS: A Fast Architectural-Level Transient Thermal Simulation Method. J. Low Power Electron. 3(1): 13-21 (2007) - [j57]Yongkui Han, Israel Koren:
Simulated Annealing Based Temperature Aware Floorplanning. J. Low Power Electron. 3(2): 141-155 (2007) - [j56]Luca Breveglieri, Israel Koren, Paolo Maistri:
An Operation-Centered Approach to Fault Detection in Symmetric Cryptography Ciphers. IEEE Trans. Computers 56(5): 635-649 (2007) - [j55]Yizheng Zhou, Vijay Lakamraju, Israel Koren, C. M. Krishna:
Software-Based Failure Detection and Recovery in Programmable Network Interfaces. IEEE Trans. Parallel Distributed Syst. 18(11): 1539-1550 (2007) - [c83]Francesco Regazzoni, Thomas Eisenbarth, Johann Großschädl, Luca Breveglieri, Paolo Ienne, Israel Koren, Christof Paar:
Power Attacks Resistance of Cryptographic S-Boxes with Added Error Detection Circuits. DFT 2007: 508-516 - [c82]Jenny Leung, Jozsef Dudas, Glenn H. Chapman, Israel Koren, Zahava Koren:
Quantitative Analysis of In-Field Defects in Image Sensor Arrays. DFT 2007: 526-534 - [c81]Jozsef Dudas, Linda Wu, Cory Jung, Glenn H. Chapman, Zahava Koren, Israel Koren:
Identification of in-field defect development in digital image sensors. Digital Photography 2007: 65020Y - [c80]Giovanni Agosta, Luca Breveglieri, Gerardo Pelosi, Israel Koren:
Countermeasures against Branch Target Buffer Attacks. FDTC 2007: 75-79 - [c79]Michael Gregoire, Israel Koren:
An Adaptive Algorithm for Fault Tolerant Re-Routing in Wireless Sensor Networks. PerCom Workshops 2007: 542-547 - [e2]Luca Breveglieri, Shay Gueron, Israel Koren, David Naccache, Jean-Pierre Seifert:
Fourth International Workshop on Fault Diagnosis and Tolerance in Cryptography, 2007, FDTC 2007: Vienna, Austria, 10 September 2007. IEEE Computer Society 2007, ISBN 0-7695-2982-8 [contents] - 2006
- [j54]Luca Breveglieri, Israel Koren:
Guest Editors' Introduction: Special Section on Fault Diagnosis and Tolerance in Cryptography. IEEE Trans. Computers 55(9): 1073-1074 (2006) - [c78]Jozsef Dudas, Cory Jung, Linda Wu, Glenn H. Chapman, Israel Koren, Zahava Koren:
On-Line Mapping of In-Field Defects in Image Sensor Arrays. DFT 2006: 439-447 - [c77]Luca Breveglieri, Israel Koren, Paolo Maistri, M. Ravasio:
Incorporating Error Detection in an RSA Architecture. FDTC 2006: 71-79 - [c76]Luca Breveglieri, Israel Koren, Paolo Maistri:
A Fault Attack Against the FOX Cipher Family. FDTC 2006: 98-105 - [c75]Yizheng Zhou, Vijay Lakamraju, Israel Koren, C. Mani Krishna:
Software-Based Adaptive and Concurrent Self-Testing in Programmable Network Interfaces. ICPADS (1) 2006: 525-532 - [c74]A. Bekkerman, Vijay Lakamraju, Israel Koren, C. M. Krishna:
Testing and Validation of the CASA DCAS System. IGARSS 2006: 1902-1905 - [c73]Luca Breveglieri, Paolo Maistri, Israel Koren:
A Note on Error Detection in an RSA Architecture by Means of Residue Codes. IOLTS 2006: 176-177 - [c72]Huaping Wang, Yao Guo, Israel Koren, C. Mani Krishna:
Compiler-based adaptive fetch throttling for energy-efficiency. ISPASS 2006: 112-119 - [e1]Luca Breveglieri, Israel Koren, David Naccache, Jean-Pierre Seifert:
Fault Diagnosis and Tolerance in Cryptography, Third International Workshop, FDTC 2006, Yokohama, Japan, October 10, 2006, Proceedings. Lecture Notes in Computer Science 4236, Springer 2006, ISBN 3-540-46250-3 [contents] - 2005
- [c71]Zhaojun Wo, Israel Koren:
Synthesis of Saturating Counters Using Traditional and Non-Traditional Basic Counters. IEEE Symposium on Computer Arithmetic 2005: 114-121 - [c70]Zhaojun Wo, Israel Koren:
Effective analytical delay model for transistor sizing. ASP-DAC 2005: 387-392 - [c69]A. Goel, C. Mani Krishna, Israel Koren:
Energy aware kernel for hard real-time systems. CASES 2005: 185-190 - [c68]Zhaojun Wo, Israel Koren, Maciej J. Ciesielski:
An ILP Formulation for Yield-driven Architectural Synthesis. DFT 2005: 12-20 - [c67]Luca Breveglieri, Israel Koren, Paolo Maistri:
Incorporating Error Detection and Online Reconfiguration into a Regular Architecture for the Advanced Encryption Standard. DFT 2005: 72-80 - [c66]Glenn H. Chapman, Israel Koren, Zahava Koren, Jozsef Dudas, Cory Jung:
On-Line Identification of Faults in Fault-Tolerant Imagers. DFT 2005: 149-157 - [c65]Zhaojun Wo, Israel Koren, Maciej J. Ciesielski:
Yield-aware Floorplanning. DSD 2005: 247-253 - [c64]Zhaojun Wo, Israel Koren:
Technology Mapping for Reliability Enhancement in Logic Synthesis. ISQED 2005: 137-142 - 2004
- [j53]Glenn H. Chapman, Sunjaya Djaja, Desmond Y. H. Cheung, Yves Audet, Israel Koren, Zahava Koren:
A Self-Correcting Active Pixel Sensor Using Hardware and Software Correction. IEEE Des. Test Comput. 21(6): 544-551 (2004) - [c63]Osman S. Unsal, Israel Koren, C. Mani Krishna, Csaba Andras Moritz:
Cool-Fetch: A Compiler-Enabled IPC Estimation Based Framework for Energy Reduction. Interaction between Compilers and Computer Architectures 2004: 43-52 - [c62]Luca Breveglieri, Israel Koren, Paolo Maistri:
Detecting Faults in Four Symmetric Key Block Ciphers. ASAP 2004: 258-268 - [c61]Saurabh Chheda, Osman S. Unsal, Israel Koren, C. Mani Krishna, Csaba Andras Moritz:
Combining compiler and runtime IPC predictions to reduce energy in next generation architectures. Conf. Computing Frontiers 2004: 240-254 - [c60]Guido Bertoni, Luca Breveglieri, Israel Koren, Paolo Maistri:
An Efficient Hardware-Based Fault Diagnosis Scheme for AES: Performances and Cost. DFT 2004: 130-138 - [c59]Luca Breveglieri, Israel Koren:
Workshop on Fault Diagnosis and Tolerance in Cryptography. DSN 2004: 902 - [c58]Yao Guo, Saurabh Chheda, Israel Koren, C. Mani Krishna, Csaba Andras Moritz:
Energy Characterization of Hardware-Based Data Prefetching. ICCD 2004: 518-523 - [c57]Yao Guo, Saurabh Chheda, Israel Koren, C. Mani Krishna, Csaba Andras Moritz:
Energy-Aware Data Prefetching for General-Purpose Programs. PACS 2004: 78-94 - [c56]E. Ciocca, Israel Koren, Zahava Koren, C. Mani Krishna, Daniel S. Katz:
Application-Level Fault Tolerance in the Orbital Thermal Imaging Spectrometer. PRDC 2004: 43-48 - 2003
- [j52]Osman S. Unsal, Israel Koren:
System-level power-aware design techniques in real-time systems. Proc. IEEE 91(7): 1055-1069 (2003) - [j51]Guido Bertoni, Luca Breveglieri, Israel Koren, Paolo Maistri, Vincenzo Piuri:
Error Analysis and Detection Procedures for a Hardware Implementation of the Advanced Encryption Standard. IEEE Trans. Computers 52(4): 492-505 (2003) - [j50]Osman S. Unsal, Raksit Ashok, Israel Koren, C. Mani Krishna, Csaba Andras Moritz:
Cool-Cache: A compiler-enabled energy efficient data caching framework for embedded/multimedia processors. ACM Trans. Embed. Comput. Syst. 2(3): 373-392 (2003) - [j49]Mandeep Singh, Israel Koren:
Fault-sensitivity analysis and reliability enhancement of analog-to-digital converters. IEEE Trans. Very Large Scale Integr. Syst. 11(5): 839-852 (2003) - [c55]Israel Koren, Yaron Koren, Bejoy G. Oomman:
Saturating Counters: Application and Design Alternatives. IEEE Symposium on Computer Arithmetic 2003: 228- - [c54]Guido Bertoni, Luca Breveglieri, Israel Koren, Paolo Maistri, Vincenzo Piuri:
Concurrent Fault Detection in a Hardware Implementation of the RC5 Encryption Algorithm. ASAP 2003: 423-432 - [c53]Guido Bertoni, Luca Breveglieri, Israel Koren, Paolo Maistri, Vincenzo Piuri:
Detecting and Locating Faults in VLSI Implementations of the Advanced Encryption Standard. DFT 2003: 105- - [c52]Atul Maheshwari, Israel Koren, Wayne P. Burleson:
Techniques for Transient Fault Sensitivity Analysis and Reduction in VLSI Circuits. DFT 2003: 597- - [c51]Vijay Lakamraju, Israel Koren, C. Mani Krishna:
Low Overhead Fault Tolerant Networking in Myrinet. DSN 2003: 193-202 - [c50]Jayakrishnan Nair, Zahava Koren, Israel Koren, C. Mani Krishna:
Pre-Processing Input Data to Augment Fault Tolerance in Space Applications. DSN 2003: 491-500 - [c49]Diganta Roychowdhury, Israel Koren, C. Mani Krishna, Yann-Hang Lee:
A Voltage Scheduling Heuristic for Real-Time Task Graphs. DSN 2003: 741-750 - [c48]Israel Koren, Julie D. Segal:
Optimizing the Yield of VLSI Circuits. ISQED 2003: 7 - 2002
- [j48]Osman S. Unsal, Israel Koren, C. Mani Krishna, Csaba Andras Moritz:
Cool-Fetch: Compiler-Enabled Power-Aware Fetch Throttling. IEEE Comput. Archit. Lett. 1 (2002) - [j47]Ramesh Karri, Balakrishnan Iyer, Israel Koren:
Phantom redundancy: a register transfer level technique for gracefully degradable data path synthesis. IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 21(8): 877-888 (2002) - [j46]Vijay Lakamraju, Israel Koren, C. Mani Krishna:
Filtering Random Graphs to Synthesize Interconnection Networks with Multiple Objectives. IEEE Trans. Parallel Distributed Syst. 13(11): 1139-1149 (2002) - [c47]Guido Bertoni, Luca Breveglieri, Israel Koren, Paolo Maistri, Vincenzo Piuri:
On the Propagation of Faults and Their Detection in a Hardware Implementation of the Advanced Encryption Standard. ASAP 2002: 303- - [c46]Guido Bertoni, Luca Breveglieri, Israel Koren, Paolo Maistri, Vincenzo Piuri:
A Parity Code Based Fault Detection for an Implementation of the Advanced Encryption Standard. DFT 2002: 51-59 - [c45]Osman S. Unsal, Israel Koren, C. Mani Krishna, Csaba Andras Moritz:
The Minimax Cache: An Energy-Efficient Framework for Media Processors. HPCA 2002: 131-140 - [c44]Zahava Koren, J. Rajagopal, C. Mani Krishna, Israel Koren, W. Wang, J. Loman:
Using Rational Approximations for Evaluating the Reliablity of Highly Reliable Systems. IPDPS 2002 - [c43]Steven Morin, Israel Koren, C. Mani Krishna:
JMPI: Implementing the Message Passing Standard in Java. IPDPS 2002 - [c42]Osman S. Unsal, Israel Koren, C. Mani Krishna:
Towards energy-aware software-based fault tolerance in real-time systems. ISLPED 2002: 124-129 - [c41]Mandeep Singh, Israel Koren:
Incorporating Fault Tolerance in Analog-to-Digital Converters (ADCs). ISQED 2002: 286-291 - 2001
- [j45]G. Durairaj, Israel Koren, C. Mani Krishna:
Importance Sampling to Evaluate Real-time System Reliability: A Case Study. Simul. 76(3): 172-182 (2001) - [j44]Dhananjay S. Phatak, Tom Goff, Israel Koren:
Constant-Time Addition and Simultaneous Format Conversion Based on Redundant Binary Representations. IEEE Trans. Computers 50(11): 1267-1278 (2001) - [c40]Israel Koren, Zahava Koren, Glenn H. Chapman:
Advanced Fault-Tolerance Techniques for a Color Digital Camera-on-a-Chip. DFT 2001: 3-10 - [c39]Mandeep Singh, Israel Koren:
Reliability Enhancement of Analog-to-Digital Converters (ADCs). DFT 2001: 347- - [c38]Osman S. Unsal, Raksit Ashok, Israel Koren, C. Mani Krishna, Csaba Andras Moritz:
Cool-cache for hot multimedia. MICRO 2001: 274-283 - 2000
- [j43]Israel Koren, Zahava Koren:
Incorporating Yield Enhancement into the Floorplanning Process. IEEE Trans. Computers 49(6): 532-541 (2000) - [j42]Israel Koren, Peter Kornerup:
Guest Editors' Introduction - Special Issue on Computer Arithmetic. IEEE Trans. Computers 49(7): 625-627 (2000) - [j41]Joshua Haines, Vijay Lakamraju, Israel Koren, C. Mani Krishna:
Application-Level Fault Tolerance as a Complement to System-Level Fault Tolerance. J. Supercomput. 16(1-2): 53-68 (2000) - [c37]Rajnish K. Prasad, Israel Koren:
The Effect of Placement on Yield for Standard Cell Designs. DFT 2000: 3-11 - [c36]Israel Koren, Zahava Koren, Glenn H. Chapman:
A Self-Correcting Active Pixel Camera. DFT 2000: 56- - [c35]Osman S. Unsal, Israel Koren, C. Mani Krishna:
Power-Aware Replication of Data Structures in Distributed Embedded Real-Time Systems. IPDPS Workshops 2000: 839-846 - [c34]Israel Koren:
Should Yield be a Design Objective? ISQED 2000: 115-120
1990 – 1999
- 1999
- [j40]David H. Albonesi, Israel Koren:
STATS: A framework for microprocessor and system-level design space exploration. J. Syst. Archit. 45(12-13): 1097-1110 (1999) - [c33]Dhananjay S. Phatak, Israel Koren:
Intermediate Variable Encodings that Enable Multiplexor-Based Implementations of Two Operand Addition. IEEE Symposium on Computer Arithmetic 1999: 22-29 - [c32]Arunshankar Venkataraman, Israel Koren:
Determination of Yield Bounds Prior to Routing. DFT 1999: 4-13 - 1998
- [j39]Israel Koren, Zahava Koren:
Defect tolerance in VLSI circuits: techniques and yield analysis. Proc. IEEE 86(9): 1819-1838 (1998) - [c31]Israel Koren, Zahava Koren:
Yield and Routing Objectives in Floorplanning. DFT 1998: 28-36 - [c30]Vijay Lakamraju, Zahava Koren, Israel Koren, C. Mani Krishna:
Measuring the Vulnerability of Interconnection Networks in Embedded Systems. IPPS/SPDP Workshops 1998: 919-924 - [c29]Zahava Koren, Israel Koren, C. Mani Krishna:
Surge Handling as a Measure of Real-Time System Dependability. IPPS/SPDP Workshops 1998: 1106-1116 - 1997
- [j38]Zahava Koren, Israel Koren:
On the effect of floorplanning on the yield of large area integrated circuits. IEEE Trans. Very Large Scale Integr. Syst. 5(1): 3-14 (1997) - [c28]David H. Albonesi, Israel Koren:
Improving the Memory Bandwidth of Highly-Integrated, Wide-Issue, Microprocessor-Based Systems. IEEE PACT 1997: 126-135 - [c27]Zhan Chen, Israel Koren:
Crosstalk Minimization in Three-Layer HVH Channel Routing. DFT 1997: 38-43 - [c26]Israel Koren, Zahava Koren:
Analysis of a Hybrid Defect-Tolerance Scheme for High-Density Memory ICs. DFT 1997: 166-174 - 1996
- [j37]David H. Albonesi, Israel Koren:
A Mean Analysis Multiprocessor Model Incorporating Superscalar Processors and Latency Tolerating Techniques. Int. J. Parallel Program. 24(3): 235-264 (1996) - [c25]Arunshankar Venkataraman, Israel Koren:
Trade-offs between yield and reliability enhancement [VLSI]. DFT 1996: 68-76 - [c24]Zhan Chen, Israel Koren:
Layer Reassignment for Antenna Effect Minimization in 3-Layer Channel Routing. DFT 1996: 77-85 - 1995
- [j36]Dhananjay S. Phatak, Israel Koren:
Complete and partial fault tolerance of feedforward neural nets. IEEE Trans. Neural Networks 6(2): 446-456 (1995) - [c23]David H. Albonesi, Israel Koren:
An analytical model of high performance superscalar-based multiprocessors. PACT 1995: 194-203 - [c22]Zhan Chen, Israel Koren:
Techniques for Yield Enhancement of VLSI Adders. ASAP 1995: 222-229 - [c21]Israel A. Wagner, Israel Koren:
The effect of spot defects on the parametric yield of long interconnection lines. DFT 1995: 46-54 - [c20]Zhan Chen, Israel Koren:
Layer assignment for yield enhancement. DFT 1995: 173-180 - [c19]Balakrishnan Iyer, Ramesh Karri, Israel Koren:
Phantom redundancy: a high-level synthesis approach for manufacturability. ICCAD 1995: 658-661 - [c18]David H. Albonesi, Israel Koren:
Architecture and technology tradeoffs in the design of next-generation multiprocessor servers. SPDP 1995: 174-181 - 1994
- [j35]Dhananjay S. Phatak, Israel Koren:
Hybrid Signed-Digit Number Systems: A Unified Framework for Redundant Number Representations With Bounded Carry Propagation Chains. IEEE Trans. Computers 43(8): 880-891 (1994) - [j34]Régis Leveugle, Zahava Koren, Israel Koren, Gabriele Saucier, Norbert Wehn:
The Hyeti Defect Tolerant Microprocessor: A Practical Experiment and its Cost-Effectiveness Analysis. IEEE Trans. Computers 43(12): 1398-1406 (1994) - [j33]Dhananjay S. Phatak, Israel Koren:
Connectivity and performance tradeoffs in the cascade correlation learning architecture. IEEE Trans. Neural Networks 5(6): 930-935 (1994) - [j32]Israel Koren, Zahava Koren, Charles H. Stapper:
A statistical study of defect maps of large area VLSI IC's. IEEE Trans. Very Large Scale Integr. Syst. 2(2): 249-256 (1994) - [c17]Venkat K. R. Chiluvuri, Israel Koren, Jeffrey L. Burns:
The Effect of Wire Length Minimization on Yield. DFT 1994: 97-105 - [c16]Zhan Chen, Israel Koren:
A Yield Study of VLSI Adders. DFT 1994: 239-245 - [c15]Aurobindo Dasgupta, Israel Koren:
An Algorithm for Area and Delay Optimization of Sequential Machines through Decomposition. HICSS (1) 1994: 36-45 - [c14]David H. Albonesi, Israel Koren:
Tradeoffs in the Design of Single Chip Multiprocessors. IFIP PACT 1994: 25-34 - 1993
- [b1]Israel Koren:
Computer arithmetic algorithms. Prentice Hall 1993, ISBN 978-0-13-151952-7, pp. I-XIII, 1-210 - [j31]Shmuel Wimer, Israel Koren, Israel Cederbaum:
On Paths with the Shortest Average Arc Length in Weighted Graphs. Discret. Appl. Math. 45(2): 169-179 (1993) - [j30]Dhananjay S. Phatak, Hoon Choi, Israel Koren:
Construction of Minimal n-2-n Encoders for Any n. Neural Comput. 5(5): 783-794 (1993) - [j29]Israel Koren, Zahava Koren, Charles H. Stapper:
A Unified Negative-Binomial Distribution for Yield Analysis of Defect-Tolerant Circuits. IEEE Trans. Computers 42(6): 724-734 (1993) - [c13]David Eisig, Josh Rotstain, Israel Koren:
The design of a 64-bit integer multiplier/divider unit. IEEE Symposium on Computer Arithmetic 1993: 171-178 - [c12]Bilha Mendelson, Israel Koren:
Mapping algorithms onto a multiple-chip data-driven array. ASAP 1993: 41-52 - [c11]Zahava Koren, Israel Koren:
Does the Floorplan of a Chip Affect Its Yield? DFT 1993: 159-166 - [c10]Israel A. Wagner, Israel Koren:
An Interactive Yield Estimator as a VLSI CAD Tool. DFT 1993: 167-174 - [c9]Venkat K. R. Chiluvuri, Israel Koren:
Topological Optimization of PLAs for Yield Enhancement. DFT 1993: 175-182 - [c8]Dhananjay S. Phatak, Israel Koren, Hoon Choi:
Hybrid Number Representations with Bounded Carry Propagation Chains. ICCD 1993: 272-275 - 1992
- [j28]Israel Cederbaum, Israel Koren, Shmuel Wimer:
Balanced Block Spacing for VLSI Layout. Discret. Appl. Math. 40(3): 303-318 (1992) - [j27]Bilha Mendelson, Israel Koren:
Estimating the Potential Parallelism and Pipelining of Algorithms for Data Flow Machines. J. Parallel Distributed Comput. 14(1): 15-28 (1992) - 1991
- [j26]Dipak Sitaram, Israel Koren, C. Mani Krishna:
A Random Distributed Algorithm to Embed Trees in Partially Faulty Processor Arrays. J. Parallel Distributed Comput. 12(1): 1-11 (1991) - [j25]Israel Koren, Zahava Koren:
Discrete and Continuous Models for the Performance of Reconfigurable Multistage Systems. IEEE Trans. Computers 40(9): 1024-1033 (1991) - [c7]Bilha Mendelson, Israel Koren:
Using Simulated Annealing for Mapping Algorithms onto Data Driven Arrays. ICPP (1) 1991: 123-127 - 1990
- [j24]Israel Koren, Adit D. Singh:
Fault Tolerance in VLSI Circuits. Computer 23(7): 73-83 (1990) - [j23]Israel Koren, Ofra Zinaty:
Evaluating Elementary Functions in a Numerical Coprocessor Based on Rational Approximations. IEEE Trans. Computers 39(8): 1030-1037 (1990)
1980 – 1989
- 1989
- [j22]Shmuel Wimer, Israel Koren, Israel Cederbaum:
Optimal aspect ratios of building blocks in VLSI. IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 8(2): 139-145 (1989) - 1988
- [j21]Israel Koren, Bilha Mendelson, Irit Peled, Gabriel M. Silberman:
A Data-Driven VLSI Array for Arbitrary Algorithms. Computer 21(10): 30-43 (1988) - [j20]Israel Koren, Zahava Koren, Dhiraj K. Pradhan:
Designing interconnection buses in VLSI and WSI for maximum yield and minimum delay. IEEE J. Solid State Circuits 23(3): 859-866 (1988) - [j19]Paul Erdös, Israel Koren, Shlomo Moran, Gabriel M. Silberman, Shmuel Zaks:
Minimum-Diameter Cyclic Arrangements in Mapping Data-Flow Graphs onto VLSI Arrays. Math. Syst. Theory 21(2): 85-98 (1988) - [j18]Shmuel Wimer, Israel Koren:
Analysis of strategies for constructive general block placement. IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 7(3): 371-377 (1988) - [c6]Shmuel Wimer, Israel Koren, Israel Cederbaum:
Optimal Aspect Ratios of Building Blocks in VLSI. DAC 1988: 66-72 - [c5]Israel Koren, Zahava Koren:
On the Bandwidth of a Multi-Stage Network in the Presence of Faulty Components. ICDCS 1988: 26-32 - 1987
- [j17]Israel Koren, Irit Peled:
The Concept and Implementation of Data-Driven Processor Arrays. Computer 20(7): 102-103 (1987) - [j16]Israel Koren, Dhiraj K. Pradhan:
Modeling the Effect of Redundancy on Yield and Performance of VLSI Systems. IEEE Trans. Computers 36(3): 344-355 (1987) - [j15]Michael Granski, Israel Koren, Gabriel M. Silberman:
The Effect of Operation Scheduling on the Performance of a Data Flow Computer. IEEE Trans. Computers 36(9): 1019-1029 (1987) - [j14]Menachem Berg, Israel Koren:
On Switching Policies for Modular Redundancy Fault-Tolerant Computing Systems. IEEE Trans. Computers 36(9): 1052-1062 (1987) - 1986
- [j13]Israel Koren, Dhiraj K. Pradhan:
Yield and performance enhancement through redundancy in VLSI and WSI multiprocessor systems. Proc. IEEE 74(5): 699-711 (1986) - [j12]Israel Koren:
Comments on "The Diogenes Approach to Testable Fault-Tolerant Arrays of Processors". IEEE Trans. Computers 35(1): 93-94 (1986) - [j11]Israel Koren, Zahava Koren, Stephen Y. H. Su:
Analysis of a Class of Recovery Procedures. IEEE Trans. Computers 35(8): 703-712 (1986) - 1985
- [c4]Haim E. Mizrahi, Israel Koren:
Evaluating the Cost-Effectiveness of Switches in Processor Array Architectures. ICPP 1985: 480-487 - 1984
- [j10]Israel Koren, Melvin A. Breuer:
On Area and Yield Considerations for Fault-Tolerant VLSI Processor Arrays. IEEE Trans. Computers 33(1): 21-27 (1984) - [j9]Dan Gordon, Israel Koren, Gabriel M. Silberman:
Embedding Tree Stuctures in VLlSI Hexagonal Arrays. IEEE Trans. Computers 33(1): 104-107 (1984) - 1983
- [c3]Israel Koren, Gabriel M. Silberman:
A Direct Mapping of Algorithms onto VLSI Processing Arrays Based on the Data Flow Approach. ICPP 1983: 335-337 - 1981
- [j8]Israel Koren, Yoram Maliniak:
On Classes of Positive, Negative, and Imaginary Radix Number Systems. IEEE Trans. Computers 30(5): 312-317 (1981) - [c2]Israel Koren:
A Reconfigurable and Fault-Tolerant VLSI Multiprocessor Array. ISCA 1981: 425-442 - 1980
- [j7]Israel Koren, Eitan Sadeh:
A New Approach to the Evaluation of the Reliability of Digital Systems. IEEE Trans. Computers 29(3): 261-267 (1980)
1970 – 1979
- 1979
- [j6]Israel Koren:
Analysis of the Signal Reliability Measure and an Evaluation Procedure. IEEE Trans. Computers 28(3): 244-249 (1979) - [j5]Israel Koren, Zvi Kohavi:
On the Properties of Sensitized Paths. IEEE Trans. Computers 28(3): 268-269 (1979) - [j4]Israel Koren, Stephen Y. H. Su:
Reliability Analysis of N-Modular Redundancy Systems with Intermittent and Permanent Faults. IEEE Trans. Computers 28(7): 514-520 (1979) - 1978
- [j3]Stephen Y. H. Su, Israel Koren, Yashwant K. Malaiya:
A Continous-Parameter Markov Model and Detection Procedures for Intermittent Faults. IEEE Trans. Computers 27(6): 567-570 (1978) - [c1]Israel Koren, Yoram Maliniak:
A unified approach to a class of number systems. IEEE Symposium on Computer Arithmetic 1978: 25-28 - 1977
- [j2]Israel Koren, Zvi Kohavi:
Sequential Fault Diagnosis in Combinational Networks. IEEE Trans. Computers 26(4): 334-342 (1977) - [j1]Israel Koren, Zvi Kohavi:
Diagnosis of Intermittent Faults in Combinational Networks. IEEE Trans. Computers 26(11): 1154-1158 (1977)
Coauthor Index
aka: Philippe O. A. Navaux
manage site settings
To protect your privacy, all features that rely on external API calls from your browser are turned off by default. You need to opt-in for them to become active. All settings here will be stored as cookies with your web browser. For more information see our F.A.Q.
Unpaywalled article links
Add open access links from to the list of external document links (if available).
Privacy notice: By enabling the option above, your browser will contact the API of unpaywall.org to load hyperlinks to open access articles. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Unpaywall privacy policy.
Archived links via Wayback Machine
For web page which are no longer available, try to retrieve content from the of the Internet Archive (if available).
Privacy notice: By enabling the option above, your browser will contact the API of archive.org to check for archived content of web pages that are no longer available. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Internet Archive privacy policy.
Reference lists
Add a list of references from , , and to record detail pages.
load references from crossref.org and opencitations.net
Privacy notice: By enabling the option above, your browser will contact the APIs of crossref.org, opencitations.net, and semanticscholar.org to load article reference information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Crossref privacy policy and the OpenCitations privacy policy, as well as the AI2 Privacy Policy covering Semantic Scholar.
Citation data
Add a list of citing articles from and to record detail pages.
load citations from opencitations.net
Privacy notice: By enabling the option above, your browser will contact the API of opencitations.net and semanticscholar.org to load citation information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the OpenCitations privacy policy as well as the AI2 Privacy Policy covering Semantic Scholar.
OpenAlex data
Load additional information about publications from .
Privacy notice: By enabling the option above, your browser will contact the API of openalex.org to load additional information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the information given by OpenAlex.
last updated on 2024-11-06 21:36 CET by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint