The Experts below are selected from a list of 96 Experts worldwide ranked by ideXlab platform
R. K. Niven - One of the best experts on this subject based on the ideXlab platform.
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Non-asymptotic Thermodynamic ensembles
EPL, 2009Co-Authors: R. K. NivenAbstract:Boltzmann's principle is used to select the "most probable" realisation (macrostate) of an isolated or Closed Thermodynamic System, containing a small number of particles (N∞), for both classical and quantum statistics. The inferred probability distributions provide the means to define intensive variables and construct Thermodynamic relationships for small microcanonical Systems, which do not satisfy the Thermodynamic limit. This is of critical importance to nanoscience and quantum technology.
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Non-asymptotic Thermodynamic ensembles
EPL, 2009Co-Authors: R. K. NivenAbstract:Boltzmann's principle is used to select the "most probable" realisation (macrostate) of an isolated or Closed Thermodynamic System, containing a small number of particles (N
L. Tóth - One of the best experts on this subject based on the ideXlab platform.
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Fuzzy control of temperature and humidity microclimate in Closed areas for poultry breeding.
Research in Agricultural Engineering, 2018Co-Authors: M. Olejár, V. Cviklovič, D. Hrubý, L. TóthAbstract:Olejar M., Cviklovic V., Hrubý D., Toth L., 2014. Fuzzy control of temperature and humidity microclimate in Closed areas for poultry breeding . Res. Agr. Eng., 60 (Special Issue) : S31–36. This contribution describes the ways of temperature and humidity microclimate control in breeding areas using a fuzzy controller. It is focused on poultry, whereby the most important parameters for optimal breeding are temperature and humidity. The main aim was to evaluate the control process according to control quality in the controller’s steady state and the power consumption of the System. The used control algorithm was designed in the Matlab application, and it was practically verified in a Closed Thermodynamic System. Practical measurements have shown that with an increasing number of fuzzy controller’s interference rules a better control quality in steady states and lower power consumption of the System is achieved.
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Fuzzy control of temperature and humidity microclimate in Closed areas for poultry breeding
Research in Agricultural Engineering, 2014Co-Authors: M. Olejár, V. Cviklovič, D. Hrubý, L. TóthAbstract:This contribution describes the ways of temperature and humidity microclimate control in breeding areas using a fuzzy controller. It is focused on poultry, whereby the most important parameters for optimal breeding are temperature and humidity. The main aim was to evaluate the control process according to control quality in the controller’s steady state and the power consumption of the System. The used control algorithm was designed in the Matlab application, and it was practically verified in a Closed Thermodynamic System. Practical measurements have shown that with an increasing number of fuzzy controller’s interference rules a better control quality in steady states and lower power consumption of the System is achieved.
M. Olejár - One of the best experts on this subject based on the ideXlab platform.
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Fuzzy control of temperature and humidity microclimate in Closed areas for poultry breeding.
Research in Agricultural Engineering, 2018Co-Authors: M. Olejár, V. Cviklovič, D. Hrubý, L. TóthAbstract:Olejar M., Cviklovic V., Hrubý D., Toth L., 2014. Fuzzy control of temperature and humidity microclimate in Closed areas for poultry breeding . Res. Agr. Eng., 60 (Special Issue) : S31–36. This contribution describes the ways of temperature and humidity microclimate control in breeding areas using a fuzzy controller. It is focused on poultry, whereby the most important parameters for optimal breeding are temperature and humidity. The main aim was to evaluate the control process according to control quality in the controller’s steady state and the power consumption of the System. The used control algorithm was designed in the Matlab application, and it was practically verified in a Closed Thermodynamic System. Practical measurements have shown that with an increasing number of fuzzy controller’s interference rules a better control quality in steady states and lower power consumption of the System is achieved.
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Fuzzy control of temperature and humidity microclimate in Closed areas for poultry breeding
Research in Agricultural Engineering, 2014Co-Authors: M. Olejár, V. Cviklovič, D. Hrubý, L. TóthAbstract:This contribution describes the ways of temperature and humidity microclimate control in breeding areas using a fuzzy controller. It is focused on poultry, whereby the most important parameters for optimal breeding are temperature and humidity. The main aim was to evaluate the control process according to control quality in the controller’s steady state and the power consumption of the System. The used control algorithm was designed in the Matlab application, and it was practically verified in a Closed Thermodynamic System. Practical measurements have shown that with an increasing number of fuzzy controller’s interference rules a better control quality in steady states and lower power consumption of the System is achieved.
V. Cviklovič - One of the best experts on this subject based on the ideXlab platform.
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Fuzzy control of temperature and humidity microclimate in Closed areas for poultry breeding.
Research in Agricultural Engineering, 2018Co-Authors: M. Olejár, V. Cviklovič, D. Hrubý, L. TóthAbstract:Olejar M., Cviklovic V., Hrubý D., Toth L., 2014. Fuzzy control of temperature and humidity microclimate in Closed areas for poultry breeding . Res. Agr. Eng., 60 (Special Issue) : S31–36. This contribution describes the ways of temperature and humidity microclimate control in breeding areas using a fuzzy controller. It is focused on poultry, whereby the most important parameters for optimal breeding are temperature and humidity. The main aim was to evaluate the control process according to control quality in the controller’s steady state and the power consumption of the System. The used control algorithm was designed in the Matlab application, and it was practically verified in a Closed Thermodynamic System. Practical measurements have shown that with an increasing number of fuzzy controller’s interference rules a better control quality in steady states and lower power consumption of the System is achieved.
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Fuzzy control of temperature and humidity microclimate in Closed areas for poultry breeding
Research in Agricultural Engineering, 2014Co-Authors: M. Olejár, V. Cviklovič, D. Hrubý, L. TóthAbstract:This contribution describes the ways of temperature and humidity microclimate control in breeding areas using a fuzzy controller. It is focused on poultry, whereby the most important parameters for optimal breeding are temperature and humidity. The main aim was to evaluate the control process according to control quality in the controller’s steady state and the power consumption of the System. The used control algorithm was designed in the Matlab application, and it was practically verified in a Closed Thermodynamic System. Practical measurements have shown that with an increasing number of fuzzy controller’s interference rules a better control quality in steady states and lower power consumption of the System is achieved.
D. Hrubý - One of the best experts on this subject based on the ideXlab platform.
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Fuzzy control of temperature and humidity microclimate in Closed areas for poultry breeding.
Research in Agricultural Engineering, 2018Co-Authors: M. Olejár, V. Cviklovič, D. Hrubý, L. TóthAbstract:Olejar M., Cviklovic V., Hrubý D., Toth L., 2014. Fuzzy control of temperature and humidity microclimate in Closed areas for poultry breeding . Res. Agr. Eng., 60 (Special Issue) : S31–36. This contribution describes the ways of temperature and humidity microclimate control in breeding areas using a fuzzy controller. It is focused on poultry, whereby the most important parameters for optimal breeding are temperature and humidity. The main aim was to evaluate the control process according to control quality in the controller’s steady state and the power consumption of the System. The used control algorithm was designed in the Matlab application, and it was practically verified in a Closed Thermodynamic System. Practical measurements have shown that with an increasing number of fuzzy controller’s interference rules a better control quality in steady states and lower power consumption of the System is achieved.
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Fuzzy control of temperature and humidity microclimate in Closed areas for poultry breeding
Research in Agricultural Engineering, 2014Co-Authors: M. Olejár, V. Cviklovič, D. Hrubý, L. TóthAbstract:This contribution describes the ways of temperature and humidity microclimate control in breeding areas using a fuzzy controller. It is focused on poultry, whereby the most important parameters for optimal breeding are temperature and humidity. The main aim was to evaluate the control process according to control quality in the controller’s steady state and the power consumption of the System. The used control algorithm was designed in the Matlab application, and it was practically verified in a Closed Thermodynamic System. Practical measurements have shown that with an increasing number of fuzzy controller’s interference rules a better control quality in steady states and lower power consumption of the System is achieved.