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### Contents

SOVIET AUTOMATIC CONTROL | 1 |

Physical Realizability at Nonlinear Invariant Systems | 9 |

An Approach to Adequacy Theory | 19 |

Copyright | |

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A. G. Ivakhnenko accuracy algorithm amplitude analog computer analysis analyzer approximation approximation error assume Avtomatyka block diagram Boolean functions calculation cells characteristic Chebyshev polynomials circuit coefficients constraints control system correlation corresponding criterion cross-correlation curve determined device differential equation distribution disturbances dynamic Electronics elements engineering example factor filter formula frequency Hence i-th initial conditions input integral interval invariance inversion Kiev Let us consider linear loop mathematical matrix maximum mean-square error method microprogram Moscow multivariable multivariable control nonlinear normal equations obtain open-loop operation optimal optimum output parameters pattern pattern recognition perceptron performance permeance polynomials possible prediction probability problem pulses random realization recognition system sampling self-learning sequence single copies solution solving Soviet Automatic Control specified stability stochastic stochastic approximation stochastic process switches synthesis Table theory threshold tion transfer function transform transient process values vector voltage zero