ACM SIGMOD Anthology TKDE dblp.uni-trier.de

Relational Database Systems with Zero Information Loss.

Gautam Bhargava, Shashi K. Gadia: Relational Database Systems with Zero Information Loss. IEEE Trans. Knowl. Data Eng. 5(1): 76-87(1993)
@article{DBLP:journals/tkde/BhargavaG93,
  author    = {Gautam Bhargava and
               Shashi K. Gadia},
  title     = {Relational Database Systems with Zero Information Loss},
  journal   = {IEEE Trans. Knowl. Data Eng.},
  volume    = {5},
  number    = {1},
  year      = {1993},
  pages     = {76-87},
  ee        = {db/journals/tkde/BhargavaG93.html},
  bibsource = {DBLP, http://dblp.uni-trier.de}
}
BibTeX

Abstract

Transaction time is used for time stamping object values to record their database history and formulate a zero information loss model for database transactions. The model consists of three components, a data history store, an update store, and a query store. In such a model, the effect of a past transaction (a query or an update) can be determined at any time. Additionally, the update and query stores make it possible to reconstruct the circumstances of updates and the information divulged in queries. Such a model is suitable for the design of secure, easy-to-audit database systems.

Copyright © 1993 by The Institute of Electrical and Electronic Engineers, Inc. (IEEE). Abstract used with permission.


Joint ACM SIGMOD / IEEE Computer Society Anthology

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References

[1]
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[2]
Gautam Bhargava, Shashi K. Gadia: Achieving Zero Information-Loss in a Classical Database Environment. VLDB 1989: 217-224 BibTeX
[3]
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Shashi K. Gadia: A Homogeneous Relational Model and Query Languages for Temporal Databases. ACM Trans. Database Syst. 13(4): 418-448(1988) BibTeX
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Shashi K. Gadia, Chuen-Sing Yeung: A Generalized Model for a Relational Temporal Database. SIGMOD Conference 1988: 251-259 BibTeX
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Nikos A. Lorentzos, Roger G. Johnson: Extending relational algebra to manipulate temporal data. Inf. Syst. 13(3): 289-296(1988) BibTeX
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David Maier: The Theory of Relational Databases. Computer Science Press 1983, ISBN 0-914894-42-0
Contents BibTeX
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Shamkant B. Navathe, Rafi Ahmed: TSQL: A Language Interface for History Databases. Temporal Aspects in Information Systems 1987: 109-122 BibTeX
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Nandlal L. Sarda: Algebra and Query Language for A Historical Data Model. Comput. J. 33(1): 11-18(1990) BibTeX
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Nandlal L. Sarda: Extensions to SQL for Historical Databases. IEEE Trans. Knowl. Data Eng. 2(2): 220-230(1990) BibTeX
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Richard T. Snodgrass: The Temporal Query Language TQuel. ACM Trans. Database Syst. 12(2): 247-298(1987) BibTeX
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Michael Stonebraker, Lawrence A. Rowe: The Design of Postgres. SIGMOD Conference 1986: 340-355 BibTeX
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Abdullah Uz Tansel: Adding time dimension to relational model and extending relational algebra. Inf. Syst. 11(4): 343-355(1986) BibTeX

Referenced by

  1. Shashi K. Gadia, Sunil S. Nair: Algebraic Identities and Query Optimization in a Parametric Model for Relational Temporal Databases. IEEE Trans. Knowl. Data Eng. 10(5): 793-807(1998)
  2. Abdullah Uz Tansel, Erkan Tin: The Expressive Power of Temporal Relational Query Languages. IEEE Trans. Knowl. Data Eng. 9(1): 120-134(1997)
  3. Abdullah Uz Tansel: Temporal Relational Data Model. IEEE Trans. Knowl. Data Eng. 9(3): 464-479(1997)
  4. Gultekin Özsoyoglu, Richard T. Snodgrass: Temporal and Real-Time Databases: A Survey. IEEE Trans. Knowl. Data Eng. 7(4): 513-532(1995)
  5. Cristina De Castro, Fabio Grandi, Maria Rita Scalas: Semantic Interoperability of Multitemporal Relational Databases. ER 1993: 463-474
  6. L. Edwin McKenzie, Richard T. Snodgrass: Evaluation of Relational Algebras Incorporating the Time Dimension in Databases. ACM Comput. Surv. 23(4): 501-543(1991)
BibTeX
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