Title of article
A general stochastic model for dynamic locking in database systems
Author/Authors
J.، Li, نويسنده , , Y.، Jiang نويسنده , , S.، Nishimura, نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2004
Pages
-307
From page
308
To page
0
Abstract
We present a novel stochastic model to study the performances of the twophase dynamic locking in database systems with no-waiting policy. It is a general stochastic model to describe the database environment and transaction states in detail. It deals with the nonuniform access, writelocking, read-locking, and multiple transaction classes in a unique way. In the analysis, we first solve the steady-state probability of the system. Then, we give the mean number of transactions with k locks, the mean total number of locks held by all transactions, the mean number of data granules locked by a transaction, the mean number of writelocks and readlocks held by a transaction, and the mean number of locked data granules in a database. These parameters provide more insight into the detailed behavior of transactions and database systems. Finally, we calculate the system throughput and restart rate, which are the two principal performance measures.
Keywords
Fluorescence resonance energy transfer , immunoglobulin G , Quantum dots
Journal title
IEEE TRANSACTIONS ON COMPUTERS
Serial Year
2004
Journal title
IEEE TRANSACTIONS ON COMPUTERS
Record number
87101
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