针对变风量空调系统的延迟,非线性和模型不确定性,本文提出将神经元P I D控制器应用于变风量空调系统中。该控制器综合了神经网络和P I D调节各自的有点,具有神经网络的学习和适应能力,同时具备P I D控制的广泛的适应性。仿真实验表明...针对变风量空调系统的延迟,非线性和模型不确定性,本文提出将神经元P I D控制器应用于变风量空调系统中。该控制器综合了神经网络和P I D调节各自的有点,具有神经网络的学习和适应能力,同时具备P I D控制的广泛的适应性。仿真实验表明该控制器控制结果优于传统的P I D控制器。展开更多
Volume fraction condition is a true constraint that must be taken into consideration in deducing the thermodynamic restrictions of mixture theory applying the axiom of dissipation. For a process to be admissible, the ...Volume fraction condition is a true constraint that must be taken into consideration in deducing the thermodynamic restrictions of mixture theory applying the axiom of dissipation. For a process to be admissible, the constraints imposed by the volume fraction condition include not only the equation obtained by taking its material derivative with respect to the motion of a given phase, but also those by taking its spatial gradient. The thermodynamic restrictions are deduced under the complete constraints, the results obtained are consistent for the mixtures with or without a compressible phase,and in which the free energy of each phase depends on the densities of all phases.展开更多
基金This work was supported by the Knowledge Innovation Foundation of Chinese Academy of Sciences.
文摘Volume fraction condition is a true constraint that must be taken into consideration in deducing the thermodynamic restrictions of mixture theory applying the axiom of dissipation. For a process to be admissible, the constraints imposed by the volume fraction condition include not only the equation obtained by taking its material derivative with respect to the motion of a given phase, but also those by taking its spatial gradient. The thermodynamic restrictions are deduced under the complete constraints, the results obtained are consistent for the mixtures with or without a compressible phase,and in which the free energy of each phase depends on the densities of all phases.