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[Simulation of a decoupling generalized predictive control algorithm for temperature-humidity system].

J Shao1, Y Xu, X Zhao

  • 1Institute of Space Medico-Engineering, Beijing, China.

Hang Tian Yi Xue Yu Yi Xue Gong Cheng = Space Medicine & Medical Engineering
|September 7, 2001
PubMed
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This study introduces a decoupling generalized predictive control (GPC) algorithm to effectively manage air-conditioning systems. By decoupling temperature and humidity, GPC can be precisely applied for enhanced environmental control.

Area of Science:

  • Control Systems Engineering
  • Environmental Engineering
  • Thermodynamics

Context:

  • Controlling temperature and humidity in air-conditioning systems is complex due to their interdependence.
  • Practical air-conditioning environmental chambers require precise and stable environmental conditions.

Purpose:

  • To present a decoupling generalized predictive control (GPC) algorithm for temperature-humidity systems.
  • To enable independent control of temperature and humidity using GPC at different sample rates.

Summary:

  • The proposed algorithm introduces absolute humidity as an intermediate variable to decouple temperature and humidity control.
  • Two independent systems are then controlled using the generalized predictive control (GPC) algorithm.
  • Simulation experiments validate the algorithm's effectiveness in decoupling and controlling the system.

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Impact:

  • Decoupling temperature and humidity significantly aids the practical application of GPC in real-world air-conditioning systems.
  • This method offers an effective approach for precise temperature and humidity management in environmental chambers.