2008 |
125 | | 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 |
124 | EE | 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 |
123 | EE | Jenny Leung,
Glenn H. Chapman,
Israel Koren,
Zahava Koren:
Automatic Detection of In-field eld Defect Growth in Image Sensors.
DFT 2008: 305-313 |
122 | EE | Huaping Wang,
Israel Koren,
C. Mani Krishna:
An adaptive resource partitioning algorithm for SMT processors.
PACT 2008: 230-239 |
2007 |
121 | | 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 |
120 | EE | 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 |
119 | EE | 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 |
118 | EE | Giovanni Agosta,
Luca Breveglieri,
Gerardo Pelosi,
Israel Koren:
Countermeasures against Branch Target Buffer Attacks.
FDTC 2007: 75-79 |
117 | EE | Michael Gregoire,
Israel Koren:
An Adaptive Algorithm for Fault Tolerant Re-Routing in Wireless Sensor Networks.
PerCom Workshops 2007: 542-547 |
116 | EE | 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) |
115 | EE | Yizheng Zhou,
Vijay Lakamraju,
Israel Koren,
C. M. Krishna:
Software-Based Failure Detection and Recovery in Programmable Network Interfaces.
IEEE Trans. Parallel Distrib. Syst. 18(11): 1539-1550 (2007) |
114 | EE | Yongkui Han,
Israel Koren,
C. Mani Krishna:
TILTS: A Fast Architectural-Level Transient Thermal Simulation Method.
J. Low Power Electronics 3(1): 13-21 (2007) |
2006 |
113 | | 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
Springer 2006 |
112 | EE | 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 |
111 | EE | Luca Breveglieri,
Israel Koren,
Paolo Maistri,
M. Ravasio:
Incorporating Error Detection in an RSA Architecture.
FDTC 2006: 71-79 |
110 | EE | Luca Breveglieri,
Israel Koren,
Paolo Maistri:
A Fault Attack Against the FOX Cipher Family.
FDTC 2006: 98-105 |
109 | EE | 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 |
108 | EE | Luca Breveglieri,
Paolo Maistri,
Israel Koren:
A Note on Error Detection in an RSA Architecture by Means of Residue Codes.
IOLTS 2006: 176-177 |
107 | EE | Huaping Wang,
Yao Guo,
Israel Koren,
C. Mani Krishna:
Compiler-based adaptive fetch throttling for energy-efficiency.
ISPASS 2006: 112-119 |
106 | EE | Luca Breveglieri,
Israel Koren:
Guest Editors' Introduction: Special Section on Fault Diagnosis and Tolerance in Cryptography.
IEEE Trans. Computers 55(9): 1073-1074 (2006) |
2005 |
105 | EE | Zhaojun Wo,
Israel Koren:
Effective analytical delay model for transistor sizing.
ASP-DAC 2005: 387-392 |
104 | EE | A. Goel,
C. Mani Krishna,
Israel Koren:
Energy aware kernel for hard real-time systems.
CASES 2005: 185-190 |
103 | EE | Zhaojun Wo,
Israel Koren,
Maciej J. Ciesielski:
An ILP Formulation for Yield-driven Architectural Synthesis.
DFT 2005: 12-20 |
102 | EE | Glenn H. Chapman,
Israel Koren,
Zahava Koren,
Jozsef Dudas,
Cory Jung:
On-Line Identification of Faults in Fault-Tolerant Imagers.
DFT 2005: 149-157 |
101 | EE | 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 |
100 | EE | Zhaojun Wo,
Israel Koren,
Maciej J. Ciesielski:
Yield-aware Floorplanning.
DSD 2005: 247-253 |
99 | EE | Zhaojun Wo,
Israel Koren:
Synthesis of Saturating Counters Using Traditional and Non-Traditional Basic Counters.
IEEE Symposium on Computer Arithmetic 2005: 114-121 |
98 | EE | Zhaojun Wo,
Israel Koren:
Technology Mapping for Reliability Enhancement in Logic Synthesis.
ISQED 2005: 137-142 |
2004 |
97 | EE | Luca Breveglieri,
Israel Koren,
Paolo Maistri:
Detecting Faults in Four Symmetric Key Block Ciphers.
ASAP 2004: 258-268 |
96 | EE | 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 |
95 | EE | Guido Bertoni,
Luca Breveglieri,
Israel Koren,
Paolo Maistri:
An Efficient Hardware-Based Fault Diagnosis Scheme for AES: Performances and Cost.
DFT 2004: 130-138 |
94 | | Luca Breveglieri,
Israel Koren:
Workshop on Fault Diagnosis and Tolerance in Cryptography.
DSN 2004: 902 |
93 | EE | Yao Guo,
Saurabh Chheda,
Israel Koren,
C. Mani Krishna,
Csaba Andras Moritz:
Energy Characterization of Hardware-Based Data Prefetching.
ICCD 2004: 518-523 |
92 | EE | 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 |
91 | EE | Yao Guo,
Saurabh Chheda,
Israel Koren,
C. Mani Krishna,
Csaba Andras Moritz:
Energy-Aware Data Prefetching for General-Purpose Programs.
PACS 2004: 78-94 |
90 | EE | 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 |
89 | EE | 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 Design & Test of Computers 21(6): 544-551 (2004) |
2003 |
88 | EE | 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 |
87 | EE | 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- |
86 | EE | Atul Maheshwari,
Israel Koren,
Wayne Burleson:
Techniques for Transient Fault Sensitivity Analysis and Reduction in VLSI Circuits.
DFT 2003: 597- |
85 | EE | Vijay Lakamraju,
Israel Koren,
C. Mani Krishna:
Low Overhead Fault Tolerant Networking in Myrinet.
DSN 2003: 193- |
84 | EE | Jayakrishnan Nair,
Zahava Koren,
Israel Koren,
C. Mani Krishna:
Pre-Processing Input Data to Augment Fault Tolerance in Space Applications.
DSN 2003: 491-500 |
83 | EE | Diganta Roychowdhury,
Israel Koren,
C. Mani Krishna,
Yann-Hang Lee:
A Voltage Scheduling Heuristic for Real-Time Task Graphs.
DSN 2003: 741-750 |
82 | EE | Israel Koren,
Yaron Koren,
Bejoy G. Oomman:
Saturating Counters: Application and Design Alternatives.
IEEE Symposium on Computer Arithmetic 2003: 228- |
81 | EE | Israel Koren,
Julie D. Segal:
Optimizing the Yield of VLSI Circuits.
ISQED 2003: 7 |
80 | EE | 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. Embedded Comput. Syst. 2(3): 373-392 (2003) |
79 | EE | 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) |
78 | EE | Mandeep Singh,
Israel Koren:
Fault-sensitivity analysis and reliability enhancement of analog-to-digital converters.
IEEE Trans. VLSI Syst. 11(5): 839-852 (2003) |
77 | | Osman S. Unsal,
Israel Koren:
System-level power-aware design techniques in real-time systems.
Proceedings of the IEEE 91(7): 1055-1069 (2003) |
2002 |
76 | EE | 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- |
75 | EE | 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 |
74 | EE | 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 |
73 | EE | Steven Morin,
Israel Koren,
C. Mani Krishna:
JMPI: Implementing the Message Passing Standard in Java.
IPDPS 2002 |
72 | EE | 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 |
71 | EE | Osman S. Unsal,
Israel Koren,
C. Mani Krishna:
Towards energy-aware software-based fault tolerance in real-time systems.
ISLPED 2002: 124-129 |
70 | EE | Mandeep Singh,
Israel Koren:
Incorporating Fault Tolerance in Analog-to-Digital Converters (ADCs).
ISQED 2002: 286-291 |
69 | EE | Osman S. Unsal,
Israel Koren,
C. Mani Krishna,
Csaba Andras Moritz:
Cool-Fetch: Compiler-Enabled Power-Aware Fetch Throttling.
Computer Architecture Letters 1: (2002) |
68 | EE | Vijay Lakamraju,
Israel Koren,
C. Mani Krishna:
Filtering Random Graphs to Synthesize Interconnection Networks with Multiple Objectives.
IEEE Trans. Parallel Distrib. Syst. 13(11): 1139-1149 (2002) |
67 | EE | Ramesh Karri,
Balakrishnan Iyer,
Israel Koren:
Phantom redundancy: a register transfer level technique for gracefully degradable data path synthesis.
IEEE Trans. on CAD of Integrated Circuits and Systems 21(8): 877-888 (2002) |
2001 |
66 | EE | Israel Koren,
Zahava Koren,
Glenn H. Chapman:
Advanced Fault-Tolerance Techniques for a Color Digital Camera-on-a-Chip.
DFT 2001: 3-10 |
65 | EE | Mandeep Singh,
Israel Koren:
Reliability Enhancement of Analog-to-Digital Converters (ADCs).
DFT 2001: 347- |
64 | EE | Osman S. Unsal,
Raksit Ashok,
Israel Koren,
C. Mani Krishna,
Csaba Andras Moritz:
Cool-cache for hot multimedia.
MICRO 2001: 274-283 |
63 | EE | 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) |
2000 |
62 | EE | Rajnish K. Prasad,
Israel Koren:
The Effect of Placement on Yield for Standard Cell Designs.
DFT 2000: 3-11 |
61 | EE | Israel Koren,
Zahava Koren,
Glenn H. Chapman:
A Self-Correcting Active Pixel Camera.
DFT 2000: 56- |
60 | EE | 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 |
59 | EE | Israel Koren:
Should Yield be a Design Objective?
ISQED 2000: 115-120 |
58 | EE | Israel Koren,
Zahava Koren:
Incorporating Yield Enhancement into the Floorplanning Process.
IEEE Trans. Computers 49(6): 532-541 (2000) |
57 | EE | Israel Koren,
Peter Kornerup:
Guest Editors' Introduction - Special Issue on Computer Arithmetic.
IEEE Trans. Computers 49(7): 625-627 (2000) |
56 | EE | Joshua Haines,
Vijay Lakamraju,
Israel Koren,
C. Mani Krishna:
Application-Level Fault Tolerance as a Complement to System-Level Fault Tolerance.
The Journal of Supercomputing 16(1-2): 53-68 (2000) |
1999 |
55 | EE | Arunshankar Venkataraman,
Israel Koren:
Determination of Yield Bounds Prior to Routing.
DFT 1999: 4-13 |
54 | EE | 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 |
1998 |
53 | EE | Israel Koren,
Zahava Koren:
Yield and Routing Objectives in Floorplanning.
DFT 1998: 28-36 |
52 | | Zahava Koren,
Israel Koren,
C. Mani Krishna:
Surge Handling as a Measure of Real-Time System Dependability.
IPPS/SPDP Workshops 1998: 1106-1116 |
51 | | Vijay Lakamraju,
Zahava Koren,
Israel Koren,
C. Mani Krishna:
Measuring the Vulnerability of Interconnection Networks in Embedded Systems.
IPPS/SPDP Workshops 1998: 919-924 |
1997 |
50 | EE | Israel Koren,
Zahava Koren:
Analysis of a Hybrid Defect-Tolerance Scheme for High-Density Memory ICs.
DFT 1997: 166-174 |
49 | EE | Zhan Chen,
Israel Koren:
Crosstalk Minimization in Three-Layer HVH Channel Routing.
DFT 1997: 38-43 |
48 | EE | David H. Albonesi,
Israel Koren:
Improving the Memory Bandwidth of Highly-Integrated, Wide-Issue, Microprocessor-Based Systems.
IEEE PACT 1997: 126-135 |
47 | EE | Zahava Koren,
Israel Koren:
On the effect of floorplanning on the yield of large area integrated circuits.
IEEE Trans. VLSI Syst. 5(1): 3-14 (1997) |
1995 |
46 | EE | Zhan Chen,
Israel Koren:
Techniques for Yield Enhancement of VLSI Adders.
ASAP 1995: 222-229 |
45 | EE | Balakrishnan Iyer,
Ramesh Karri,
Israel Koren:
Phantom redundancy: a high-level synthesis approach for manufacturability.
ICCAD 1995: 658-661 |
1994 |
44 | | Zhan Chen,
Israel Koren:
A Yield Study of VLSI Adders.
DFT 1994: 239-245 |
43 | | Venkat K. R. Chiluvuri,
Israel Koren,
Jeffrey L. Burns:
The Effect of Wire Length Minimization on Yield.
DFT 1994: 97-105 |
42 | | Aurobindo Dasgupta,
Israel Koren:
An Algorithm for Area and Delay Optimization of Sequential Machines through Decomposition.
HICSS (1) 1994: 36-45 |
41 | | David H. Albonesi,
Israel Koren:
Tradeoffs in the Design of Single Chip Multiprocessors.
IFIP PACT 1994: 25-34 |
40 | | 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) |
39 | | 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) |
38 | EE | Israel Koren,
Zahava Koren,
Charles H. Stapper:
A statistical study of defect maps of large area VLSI IC's.
IEEE Trans. VLSI Syst. 2(2): 249-256 (1994) |
1993 |
37 | | Zahava Koren,
Israel Koren:
Does the Floorplan of a Chip Affect Its Yield?
DFT 1993: 159-166 |
36 | | Israel A. Wagner,
Israel Koren:
An Interactive Yield Estimator as a VLSI CAD Tool.
DFT 1993: 167-174 |
35 | | Venkat K. R. Chiluvuri,
Israel Koren:
Topological Optimization of PLAs for Yield Enhancement.
DFT 1993: 175-182 |
34 | | Dhananjay S. Phatak,
Israel Koren,
Hoon Choi:
Hybrid Number Representations with Bounded Carry Propagation Chains.
ICCD 1993: 272-275 |
33 | EE | Shmuel Wimer,
Israel Koren,
Israel Cederbaum:
On Paths with the Shortest Average Arc Length in Weighted Graphs.
Discrete Applied Mathematics 45(2): 169-179 (1993) |
32 | | 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) |
1992 |
31 | | Israel Cederbaum,
Israel Koren,
Shmuel Wimer:
Balanced Block Spacing for VLSI Layout.
Discrete Applied Mathematics 40(3): 303-318 (1992) |
30 | | Bilha Mendelson,
Israel Koren:
Estimating the Potential Parallelism and Pipelining of Algorithms for Data Flow Machines.
J. Parallel Distrib. Comput. 14(1): 15-28 (1992) |
1991 |
29 | | Bilha Mendelson,
Israel Koren:
Using Simulated Annealing for Mapping Algorithms onto Data Driven Arrays.
ICPP (1) 1991: 123-127 |
28 | | Israel Koren,
Zahava Koren:
Discrete and Continuous Models for the Performance of Reconfigurable Multistage Systems.
IEEE Trans. Computers 40(9): 1024-1033 (1991) |
27 | | Dipak Sitaram,
Israel Koren,
C. Mani Krishna:
A Random Distributed Algorithm to Embed Trees in Partially Faulty Processor Arrays.
J. Parallel Distrib. Comput. 12(1): 1-11 (1991) |
1990 |
26 | | Israel Koren,
Adit D. Singh:
Fault Tolerance in VLSI Circuits.
IEEE Computer 23(7): 73-83 (1990) |
25 | | Israel Koren,
Ofra Zinaty:
Evaluating Elementary Functions in a Numerical Coprocessor Based on Rational Approximations.
IEEE Trans. Computers 39(8): 1030-1037 (1990) |
1989 |
24 | EE | Shmuel Wimer,
Israel Koren,
Israel Cederbaum:
Optimal aspect ratios of building blocks in VLSI.
IEEE Trans. on CAD of Integrated Circuits and Systems 8(2): 139-145 (1989) |
1988 |
23 | EE | Shmuel Wimer,
Israel Koren,
Israel Cederbaum:
Optimal Aspect Ratios of Building Blocks in VLSI.
DAC 1988: 66-72 |
22 | | Israel Koren,
Zahava Koren:
On the Bandwidth of a Multi-Stage Network in the Presence of Faulty Components.
ICDCS 1988: 26-32 |
21 | | Israel Koren,
Bilha Mendelson,
Irit Peled,
Gabriel M. Silberman:
A Data-Driven VLSI Array for Arbitrary Algorithms.
IEEE Computer 21(10): 30-43 (1988) |
20 | EE | Shmuel Wimer,
Israel Koren:
Analysis of strategies for constructive general block placement.
IEEE Trans. on CAD of Integrated Circuits and Systems 7(3): 371-377 (1988) |
19 | | Paul Erdös,
Israel Koren,
Shlomo Moran,
Gabriel M. Silberman,
Shmuel Zaks:
Minimum-Diameter Cyclic Arrangements in Mapping Data-Flow Graphs onto VLSI Arrays.
Mathematical Systems Theory 21(2): 85-98 (1988) |
1987 |
18 | | 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) |
17 | | 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) |
16 | | Menachem Berg,
Israel Koren:
On Switching Policies for Modular Redundancy Fault-Tolerant Computing Systems.
IEEE Trans. Computers 36(9): 1052-1062 (1987) |
1986 |
15 | | Israel Koren:
Comments on ``The Diogenes Approach to Testable Fault-Tolerant Arrays of Processors''.
IEEE Trans. Computers 35(1): 93-94 (1986) |
14 | | Israel Koren,
Zahava Koren,
Stephen Y. H. Su:
Analaysis of a Class of Recovery Procedures.
IEEE Trans. Computers 35(8): 703-712 (1986) |
1985 |
13 | | Haim E. Mizrahi,
Israel Koren:
Evaluating the Cost-Effectiveness of Switches in Processor Array Architectures.
ICPP 1985: 480-487 |
1984 |
12 | | Dan Gordon,
Israel Koren,
Gabriel M. Silberman:
Embedding Tree Stuctures in VLlSI Hexagonal Arrays.
IEEE Trans. Computers 33(1): 104-107 (1984) |
11 | | Israel Koren,
Melvin A. Breuer:
On Area and Yield Considerations for Fault-Tolerant VLSI Processor Arrays.
IEEE Trans. Computers 33(1): 21-27 (1984) |
1983 |
10 | | 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 |
9 | | Israel Koren:
A Reconfigurable and Fault-Tolerant VLSI Multiprocessor Array.
ISCA 1981: 425-442 |
8 | | Israel Koren,
Yoram Maliniak:
On Classes of Positive, Negative, and Imaginary Radix Number Systems.
IEEE Trans. Computers 30(5): 312-317 (1981) |
1980 |
7 | | Israel Koren,
Eitan Sadeh:
A New Approach to the Evaluation of the Reliability of Digital Systems.
IEEE Trans. Computers 29(3): 261-267 (1980) |
1979 |
6 | | Israel Koren:
Analysis of the Signal Reliability Measure and an Evaluation Procedure.
IEEE Trans. Computers 28(3): 244-249 (1979) |
5 | | Israel Koren,
Zvi Kohavi:
On the Properties of Sensitized Paths.
IEEE Trans. Computers 28(3): 268-269 (1979) |
4 | | 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 |
3 | | 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) |
1977 |
2 | | Israel Koren,
Zvi Kohavi:
Diagnosis of Intermittent Faults in Combinational Networks.
IEEE Trans. Computers 26(11): 1154-1158 (1977) |
1 | | Israel Koren,
Zvi Kohavi:
Sequential Fault Diagnosis in Combinational Networks.
IEEE Trans. Computers 26(4): 334-342 (1977) |