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A method for solving systems of first order linear homogeneous differential equations when the elements of the forcing vector are modelled as step functions

Author: Robert A Johnson; Board of Governors of the Federal Reserve System (U.S.)
Publisher: [Washington, D.C.] : [Board of Governors of the Federal Reserve System], [1986]
Series: International finance discussion papers, 275.
Edition/Format:   eBook : Document : National government publication : EnglishView all editions and formats
Summary:
This paper presents a method for solving a system of first order linear differential equations with constant coefficients when the elements of the forcing vector are step functions. The analysis presented in the text has been programmed for use in the computer simulation of linear continuous time rational expectations models using any combination of anticipated and unanticipated, permanent or temporary shocks. The  Read more...
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Additional Physical Format: Print version:
Johnson, Robert A.
Method for solving systems of first order linear homogeneous differential equations when the elements of the forcing vectorr are modelled as step functions
(OCoLC)14980252
Material Type: Document, Government publication, National government publication, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Robert A Johnson; Board of Governors of the Federal Reserve System (U.S.)
OCLC Number: 697622783
Notes: Title from title screen (viewed on Oct. 31, 2012).
"February 1986."
Description: 1 online resource (32 pages).
Series Title: International finance discussion papers, 275.
Responsibility: by Robert A. Johnson.

Abstract:

This paper presents a method for solving a system of first order linear differential equations with constant coefficients when the elements of the forcing vector are step functions. The analysis presented in the text has been programmed for use in the computer simulation of linear continuous time rational expectations models using any combination of anticipated and unanticipated, permanent or temporary shocks. The program entitled "JAB" is available from the author upon request.

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