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Publications in Math-Net.Ru
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Identification of the parameters of aperiodic objects dynamic models
Probl. Upr., 2011, no. 6, 14–20
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Nonlinear noise immunity differentiators
Probl. Upr., 2010, no. 3, 26–29
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The adaptive optimal differentiation by standard deviation criterion
UBS, 28 (2010), 75–88
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Automatic search for settings of PI- and PID-regulators optimal with respect to the degree of stability
Probl. Upr., 2009, no. 2, 8–13
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Investigation of the solutions optimal with respect to the degree of stability at proportional-plus-integral control
Probl. Upr., 2008, no. 2, 12–20
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On the possibility of PID control of the standard inertial and oscillatory plants
Avtomat. i Telemekh., 2007, no. 7, 18–30
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Stability-optimal control systems for plants with “unstable” numerator of the transfer function
Avtomat. i Telemekh., 2004, no. 9, 27–39
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Stability degree-optimal control systems of aperiodic objects
Avtomat. i Telemekh., 2004, no. 1, 35–49
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Dynamic object control systems optimal with respect to the degree of stability
Probl. Upr., 2003, no. 3, 2–9
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Stability-Optimal One-Dimensional Control Systems. II
Avtomat. i Telemekh., 2001, no. 5, 65–76
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Stability-Optimal One-Dimensional Control Systems. I
Avtomat. i Telemekh., 2001, no. 4, 56–66
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On the time-optimality of tracking systems with a maximum degree of stability
Avtomat. i Telemekh., 1999, no. 5, 45–59
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Sufficient conditions for the optimality of structures in maximally stable systems of arbitrary type
Avtomat. i Telemekh., 1999, no. 4, 43–57
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A geometric approach to the analysis of optimal structures in systems with a maximum degree of stability. II
Avtomat. i Telemekh., 1998, no. 5, 70–81
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A geometric approach to the analysis of optimal structures in systems with a maximum degree of stability. I
Avtomat. i Telemekh., 1998, no. 4, 70–83
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Sufficient Conditions of Extrema in Systems with Maximum Degree of Stability. II
Avtomat. i Telemekh., 1997, no. 8, 67–79
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Sufficient Conditions of Extrema in Systems with Maximum Degree of Stability. I
Avtomat. i Telemekh., 1997, no. 3, 93–105
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Design methods for stability degree optimal control systems
Avtomat. i Telemekh., 1990, no. 10, 86–95
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A design procedure for stability-optimal PID controls. II
Avtomat. i Telemekh., 1987, no. 6, 50–59
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Computing stability-optimal pi controls. I
Avtomat. i Telemekh., 1987, no. 4, 16–25
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Estimating the performance indicators of linear control systems
Avtomat. i Telemekh., 1987, no. 3, 27–35
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Design a control system for parallel power-generating sets
Avtomat. i Telemekh., 1987, no. 2, 33–40
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Design of optimal linear controllers
Avtomat. i Telemekh., 1984, no. 12, 22–33
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Ways tî design optimal aperiodic systems
Avtomat. i Telemekh., 1984, no. 10, 51–59
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Multidimensional systems of maximal stability degree
Avtomat. i Telemekh., 1980, no. 9, 35–42
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Solution tî problems of «fast» identification by using multidimensional sliding modes
Avtomat. i Telemekh., 1980, no. 2, 72–78
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Techniques for design of a maximally stable control systems
Avtomat. i Telemekh., 1980, no. 1, 28–37
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Noise-immune identification techniques
Avtomat. i Telemekh., 1978, no. 4, 56–68
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Design of discontinuous controls for plants with a variable delay
Avtomat. i Telemekh., 1977, no. 7, 9–15
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Design of adaptive controllers belonging to variable structure systems
Avtomat. i Telemekh., 1977, no. 5, 54–60
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Identification of linear dynamic plants in the presence of noises
Avtomat. i Telemekh., 1976, no. 8, 54–61
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Certain methods of adaptive general purpose controller design
Avtomat. i Telemekh., 1976, no. 4, 66–77
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The use of piecewise-continuous dynamic systems in filtering problems
Avtomat. i Telemekh., 1976, no. 3, 62–72
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Application of the variable system structure methods in problems of adaptive filtration and differentiation
Dokl. Akad. Nauk SSSR, 226:5 (1976), 1034–1037
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On one identification method
Avtomat. i Telemekh., 1975, no. 11, 80–92
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