Two-Parameter Stochastic Processes With Finite Variation - 9780530005140

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Abstract: Let E be a Banach space with norm -, and f: R2+ ?E a function with finite variation. Properties of the variation are studied, and an associated increasing real-valued function f is defined. Sufficient conditions are given for f to have properties analogous to those of functions of one variable. A correspondence f f between such functions and E-valued Borel measures on R2+ is established, and the equality f = ?f is proved. Correspondences between E-valued two-parameter processes X with finite variation x and E-valued stochastic measures with finite variation are established. The case where X takes values in L(E, F) (F a Banach space) is studied, and it is shown that the associated measure ?x takes values in L(E, F"); some x sufficient conditions for y to be L(E, F)-valued are given. Similar results for the converse problem are established, and some conditions sufficient for the equality x = ?x are given. Dissertation Discovery Company and University of Florida are dedicated to making scholarly works more discoverable and accessible throughout the world. This dissertation, "Two-parameter Stochastic Processes With Finite Variation" by Charles Lindsey, was obtained from University of Florida and is being sold with permission from the author. A digital copy of this work may also be found in the university's institutional repository, IR@UF. The content of this dissertation has not been altered in any way. We have altered the formatting in order to facilitate the ease of printing and reading of the dissertation.


  • | Author: Charles Lindsey
  • | Publisher: Dissertation Discovery Company
  • | Publication Date: May 31, 2019
  • | Number of Pages: 160 pages
  • | Language: English
  • | Binding: Paperback/Mathematics
  • | ISBN-10: 053000514X
  • | ISBN-13: 9780530005140
Author:
Charles Lindsey
Publisher:
Dissertation Discovery Company
Publication Date:
May 31, 2019
Number of pages:
160 pages
Language:
English
Binding:
Paperback/Mathematics
ISBN-10:
053000514X
ISBN-13:
9780530005140