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Samara, Russia

Solodyannikov Y.V.,SJC Samara Dialog
Automation and Remote Control | Year: 2014

For the optimal control problem for a queueing network state, we write the Bellman equation and give examples of its analytic and numerical solutions. In the first part, we give examples of solving optimal control problems for elementary network structures. In the second part, we give a solution of the optimal control problem for the network state and observations that gives an answer to the question of what, when, where, and how to measure in the network while solving dynamic routing problems. We give examples of solving synthesis problems for optimal controls and optimal network informational structures for modern telecommunicational systems. © 2014 Pleiades Publishing, Ltd.


Solodyannikov Yu.V.,SJC Samara Dialog
Automation and Remote Control | Year: 2014

We study the optimal control problem in a queueing network under incomplete data. With dynamic programming, we solve the optimal control problem for the network state and observations. We give a general method that can answer what, where, when, and how to measure in the network when solving dynamic routing problems. We define general notions and methods of the theory of network measurement. We give examples of solving joint optimal control and observation problems for elementary network structures and modern telecommunication systems. © 2014 Pleiades Publishing, Ltd.


Proshin A.P.,SJC Samara Dialog | Solodyannikov Y.V.,SJC Samara Dialog
Automation and Remote Control | Year: 2013

Based on a mathematical model of the blood circulatory system, we construct a mathematical model for lactate metabolism in a human body. We pose the identification problem for lactate metabolism parameters by measurements. We develop the method, algorithm, and software for solving this identification problem. We also consider practical applications in sports medicine and the training process, in particular in our studies of the anaerobic threshold phenomenon and propose new methods for estimating the individual anaerobic threshold and maximal oxygen consumption for athletes. © 2013 Pleiades Publishing, Ltd.

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