His scientific interests lie mostly in Control theory, Control engineering, HVAC, PID controller and Control system. His study brings together the fields of Process control and Control theory. The various areas that Wenjian Cai examines in his HVAC study include Simulation, Cooling load and Nonlinear system.
As a member of one scientific family, Wenjian Cai mostly works in the field of PID controller, focusing on Decoupling and, on occasion, Robustness, Event loop, Process identification, Relay and Distributed control system. His work in Control system addresses subjects such as Temperature control, which are connected to disciplines such as Inverse, Cascade and Networked control system. Wenjian Cai works mostly in the field of Multivariable calculus, limiting it down to topics relating to Decentralised system and, in certain cases, Closed-loop transfer function, as a part of the same area of interest.
His primary areas of investigation include Control theory, Control engineering, PID controller, Control system and HVAC. His Control theory study often links to related topics such as Model predictive control. His Control engineering research is multidisciplinary, incorporating elements of Genetic algorithm, Optimization problem and Real-time Control System.
His research links Cascade with PID controller. His Multivariable calculus research incorporates elements of Decoupling, Closed-loop transfer function and Design methods. His Transfer function study combines topics in areas such as Process control and Decentralised system.
Wenjian Cai mainly investigates Control theory, Damper, Process engineering, Heat transfer and Duct. His research integrates issues of Optimization problem, Airflow and Model predictive control in his study of Control theory. Wenjian Cai interconnects Control engineering, Genetic algorithm and Optimal control in the investigation of issues within Optimization problem.
His study in Damper is interdisciplinary in nature, drawing from both System model, Demand controlled ventilation, Ventilation, Static pressure and PID controller. His study on Process engineering also encompasses disciplines like
Wenjian Cai focuses on Control theory, Damper, Airflow, Control engineering and Air conditioning. His biological study spans a wide range of topics, including Duct, Model predictive control and Fuzzy logic. His studies deal with areas such as Automatic control, Decentralised system and Nonlinear system as well as Fuzzy logic.
Wenjian Cai has included themes like Optimization problem and Liquid desiccant in his Control engineering study. His work carried out in the field of Air conditioning brings together such families of science as Nuclear engineering, Pressure drop and Chemical engineering. The Robustness study combines topics in areas such as HVAC and Mathematical optimization.
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Numerical investigation of geometry parameters for design of high performance ejectors
Yinhai Zhu;Yinhai Zhu;Wenjian Cai;Changyun Wen;Yanzhong Li.
Applied Thermal Engineering (2009)
Nonfragile Distributed Filtering for T–S Fuzzy Systems in Sensor Networks
Dan Zhang;Wenjian Cai;Lihua Xie;Qing-Guo Wang.
IEEE Transactions on Fuzzy Systems (2015)
Robust identification of first-order plus dead-time model from step response
Qiang Bi;Wen-Jian Cai;Eng-Lock Lee;Qing-Guo Wang.
Control Engineering Practice (1999)
HVAC system optimization—in-building section
Lu Lu;Wenjian Cai;Lihua Xie;Shujiang Li.
Energy and Buildings (2005)
Advanced controller auto-tuning and its application in HVAC systems
Qiang Bi;Wen-Jian Cai;Qing-Guo Wang;Chang-Chieh Hang.
Control Engineering Practice (2000)
Shock circle model for ejector performance evaluation
Yinhai Zhu;Wenjian Cai;Changyun Wen;Yanzhong Li.
Energy Conversion and Management (2007)
Equivalent transfer function method for PI/PID controller design of MIMO processes
Qiang Xiong;Wen-Jian Cai;Wen-Jian Cai;Mao-Jun He.
Journal of Process Control (2007)
A simplified modeling of cooling coils for control and optimization of HVAC systems
Yao-Wen Wang;Wen-Jian Cai;Yeng-Chai Soh;Shu-Jiang Li.
Energy Conversion and Management (2004)
HVAC system optimization––condenser water loop
Lu Lu;Wenjian Cai;Yeng Chai Soh;Lihua Xie.
Energy Conversion and Management (2004)
A practical loop pairing criterion for multivariable processes
Qiang Xiong;Wen-Jian Cai;Mao-Jun He.
Journal of Process Control (2005)
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