Travelled to:
1 × France
1 × Italy
1 × Mexico
2 × Canada
6 × USA
Collaborated with:
A.Silberschatz P.Dasgupta K.V.Palem D.S.Fussell P.G.Spirakis A.Raghunathan A.Tuzhilin ∅ A.Baratloo C.Mohan M.O.Rabin
Talks about:
lock (5) protocol (4) parallel (4) databas (4) system (4) effici (3) comput (3) phase (3) two (3) non (3)
Person: Zvi M. Kedem
DBLP: Kedem:Zvi_M=
Contributed to:
Wrote 11 papers:
- HPDC-1995-BaratlooDK #distributed #fault tolerance #named #novel #parallel #platform
- CALYPSO: A Novel Software System for Fault-Tolerant Parallel Processing on Distributed Platforms (AB, PD, ZMK), pp. 122–129.
- STOC-1992-KedemPRR #parallel #performance #program transformation
- Efficient Program Transformations for Resilient Parallel Computation via Randomization (ZMK, KVP, MOR, AR), pp. 306–317.
- STOC-1991-KedemPRS #parallel #performance
- Combining Tentative and Definite Executions for Very Fast Dependable Parallel Computing (ZMK, KVP, AR, PGS), pp. 381–390.
- STOC-1990-KedemPS #parallel #performance #robust
- Efficient Robust Parallel Computations (ZMK, KVP, PGS), pp. 138–148.
- PODS-1989-KedemT #behaviour #database #modelling #relational
- Relational Database Behavior: Utilizing Relational Discrete Event Systems and Models (ZMK, AT), pp. 336–346.
- VLDB-1983-DasguptaK #concurrent #database #protocol
- A Non-Two-Phase Locking Protocol for Concurrency Control in General Databases (PD, ZMK), pp. 92–94.
- VLDB-1982-KedemMS #concurrent #performance #protocol
- An Efficient Deadlock Removal Scheme for Non-Two-Phase Locking Protocols (ZMK, CM, AS), pp. 91–97.
- SIGMOD-1981-KedemS #concurrent #database #using
- Deadlock Removal Using Partial Rollback in Database Systems (DSF, ZMK, AS), pp. 65–73.
- VLDB-1981-FussellKS #database #formal method #protocol
- A Theory of Correct Locking Protocols for Database Systems (DSF, ZMK, AS), pp. 112–124.
- VLDB-1980-KedemS #protocol
- Non-Two-Phase Locking Protocols with Shared and Exclusive Locks (ZMK, AS), pp. 309–317.
- STOC-1974-Kedem #bound #multi
- Combining Dimensionality and Rate of Growth Arguments for Establishing Lower Bounds on the Number of Multiplications (ZMK), pp. 334–341.