An integrated control system for optimizing the energy consumption and user comfort in buildings

J. Pargfrieder1, H.P. Jorgl1
1Institute for Machine and Process Automation, Vienna, Austria

Tóm tắt

In this paper, an HVAC system consisting of a thermal and ventilation subsystem and a lighting subsystem is analyzed in detail. The objective of this work is the development of an integrated control system to optimize energy consumption and user comfort. The entire control system is described in detail. The cross coupling, which links the thermal system with the lighting system, is specified. This allows a separation of the control algorithms according to the requirements. The core objective is the design of several intelligent thermal control algorithms. An algorithm using a fuzzy controller and an adapting power profile, a controller which uses the same algorithm as mentioned before but which optimizes the fuzzy controller parameters using genetic algorithms, and a generalized predictive controller (GPC) are presented. Different aspects of the control strategies, the diverse specifications of the algorithms and any restrictions concerning the implementation are listed. Simulation results of different controllers are presented and discussed.

Từ khóa

#Centralized control #Energy consumption #Control systems #Temperature control #Lighting control #Thermal variables control #Ventilation #Testing #Optimal control #Intelligent control

Tài liệu tham khảo

mitchell, 1998, An introduction to genetic algorithms, 10.7551/mitpress/3927.001.0001 fanger, 1984, Moderate thermal environment determination of the PMV and PPD indices and specification of the conditions for thermal comfort jörgl, 1996, Identification and Adaptive Control Lecture Notes 10.1016/0005-1098(87)90087-2 ljung, 1987, System Identification&#x2014 Theory for the User 0, Echelon is the company developing and selling LonWorks 0, Efficient Design Incorporating Fundamental Improvements for Control and Integrated Optimization, 4th FWP JOULE III program Contract No JOE3 97 0069