DocumentCode
1175743
Title
Frequency domain criteria for the absence of zero-input limit cycles in nonlinear discrete-time systems, with applications to digital filters
Author
Claasen, T. ; Mecklenbräuker, W. F G ; Peek, J.B.H.
Volume
22
Issue
3
fYear
1975
fDate
3/1/1975 12:00:00 AM
Firstpage
232
Lastpage
239
Abstract
On the basis of a theorem of Barkin, a number of criteria are derived which give sufficient conditions for the absence of zero-input limit cycles in discrete-time and especially digital systems. These criteria are formulated in the frequency domain and provide a possibility of investigating the absence of a zero-input limit cycle of a specific length
. Depending on the particular characteristics of the nonlinearities and the number of nonlinearities in the system, different criteria are obtained. Application of the criteria results in most cases in a linear programming problem. The solutions to this problem for the case of a second-order digital filter with one and with two quantization nonlinearities are discussed.
. Depending on the particular characteristics of the nonlinearities and the number of nonlinearities in the system, different criteria are obtained. Application of the criteria results in most cases in a linear programming problem. The solutions to this problem for the case of a second-order digital filter with one and with two quantization nonlinearities are discussed.Keywords
Digital filter limit cycles; Discrete-time systems, nonlinear; Nonlinear systems, discrete-time; Recursive digital filters; Sampling and quantization; Circuit theory; Conferences; Digital filters; Digital systems; Frequency domain analysis; Limit-cycles; Notice of Violation; Quantization; Roundoff errors; Sufficient conditions;
fLanguage
English
Journal_Title
Circuits and Systems, IEEE Transactions on
Publisher
ieee
ISSN
0098-4094
Type
jour
DOI
10.1109/TCS.1975.1084033
Filename
1084033
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