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An efficient integer-preserving stability test for discrete-time systems
Yuval Bistritz
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Corresponding author for this work
School of Electrical Engineering
Research output
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Article
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peer-review
10
Scopus citations
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Dive into the research topics of 'An efficient integer-preserving stability test for discrete-time systems'. Together they form a unique fingerprint.
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Keyphrases
Algebraic Rings
33%
Computing Time
33%
Designable
33%
Discrete-time Linear Systems
33%
Discrete-time Systems
100%
Explosives
33%
Exponential Growth
33%
High-order Polynomial
33%
Linear Growth
33%
Numerical Accuracy
33%
Numerical Examples
33%
Qualitative Evaluation
33%
Recursion
33%
Stability Constraints
33%
Stability Test
100%
Test Form
33%
Two Dimensional
33%
Engineering
Computing Time
33%
Dimensional Discrete
33%
Discrete Time
33%
Discrete-Time Systems
100%
Exponential Growth
33%
Numerical Accuracy
33%
Numerical Example
33%
Stability Test
100%
Two Dimensional
33%
Computer Science
Degree Polynomial
50%
Dimensional Discrete
50%
Discrete Time System
100%
discrete-time
50%
Exponential Growth
50%
Linear Systems
50%
Numerical Example
50%
Chemical Engineering
Linear Systems
100%