Identification of distributed dynamic parameters life support systems of biological objects
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Abstract
The theoretical questions of using the computers system for investigation the dynamics system for life-support of the agriculture biological objects is considered in this article. The structure of control system with sensors for identification the parametrs of artificial microclimat is studyed
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References
S. Osinov, “Multilayer synthesis method grid structure”, Electronics and communication, no. 5, pp. 69–71, 2010.
L. Vengerovsky and H. Vanshtein, Systemtemperature control in radio electronics, L.: Energy, 1969, p. 76.
L. Artyushin, O. Mashkov, B. Durnyak, and M. Sivov, Theory of automatic keruvane, Lviv: UAD, 2004.
Development of a computer-integrated system effective management of energy resources in poultry farms, Report on the GDR (final), UkrNIINTI, state registration no. 0108U0011969, 2010, p. 132
G. Karandakov and V. Chetverukhin, “Application of four-layer mesh structures for modeling and estimation of the state of dynamic objects with distributed parameters”, Electronic modeling, no. 1, pp. 93–96, Jan. 1982.
V. Pugachev and I. Sinitsyn, Stochasticdifferential systems, M.: Nauka, 1985, p. 264.
B. Golub, Automated management of the efficiency parameters of the industrial poultry house with the monitoring subsystem and support for decision-making, NUHT, p. 20, 2011.
A. Borisov, S. Osinov, V. Zavorotny, and B. Lupina, “Regarding modelingthermally insulated region of the thermoresistive sensor”, Electronics and communication, pp. 24–27, 2007.