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Implementation of a Two-Stage Nonlinear Digital Filtering Algorithm Based on the Minimum-Variance Method

https://doi.org/10.17586/0021-3454-2024-67-7-559-566

Abstract

Hardware implementation of a method for processing phase-shift-keyed and frequency-shift-keyed signals based on two-stage nonlinear digital filtering is presented. The first stage is an informationally optimal linear filter with complex coefficients, the second is a quadratic filter based on the Capon minimum-variance method. The algorithm is implemented in hardware as a stand-alone device with an embedded computing system based on programmable logic integrated circuits.

About the Authors

O. A. Morozov
Lobachevsky State University
Russian Federation

Oleg A. Morozov — Dr. Sci., Professor; Department of Information Technologies in Physical Research; Head of the Department

Nizhny Novgorod



E. M. Sorokhtin
Lobachevsky State University
Russian Federation

Evgeny M. Sorokhtin —  Physical-Technical Scientific Research Institute; Leading Engineer

Nizhny Novgorod



M. M. Sorokhtin
Lobachevsky State University
Russian Federation

Mikhail M. Sorokhtin — PhD;  Department of Information Technologies in Physical Research; Senior Lecturer

Nizhny Novgorod



References

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For citations:


Morozov O.A., Sorokhtin E.M., Sorokhtin M.M. Implementation of a Two-Stage Nonlinear Digital Filtering Algorithm Based on the Minimum-Variance Method. Journal of Instrument Engineering. 2024;67(7):559-566. (In Russ.) https://doi.org/10.17586/0021-3454-2024-67-7-559-566

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ISSN 0021-3454 (Print)
ISSN 2500-0381 (Online)