DocumentCode
3402335
Title
Fuzzy linguistic knowledge based behavior extraction for building energy management systems
Author
Wijayasekara, Dumidu ; Manic, Milos ; Rieger, Craig
Author_Institution
Univ. of Idaho, Idaho Falls, ID, USA
fYear
2013
fDate
13-15 Aug. 2013
Firstpage
80
Lastpage
85
Abstract
Significant portion of world energy production is consumed by building Heating, Ventilation and Air Conditioning (HVAC) units. Thus along with occupant comfort, energy efficiency is also an important factor in HVAC control. Modern buildings use advanced Multiple Input Multiple Output (MIMO) control schemes to realize these goals. However, since the performance of HVAC units is dependent on many criteria including uncertainties in weather, number of occupants, and thermal state, the performance of current state of the art systems are sub-optimal. Furthermore, because of the large number of sensors in buildings, and the high frequency of data collection, large amount of information is available. Therefore, important behavior of buildings that compromise energy efficiency or occupant comfort is difficult to identify. This paper presents an easy to use and understandable framework for identifying such behavior. The presented framework uses human understandable knowledge-base to extract important behavior of buildings and present it to users via a graphical user interface. The presented framework was tested on a building in the Pacific Northwest and was shown to be able to identify important behavior that relates to energy efficiency and occupant comfort.
Keywords
HVAC; MIMO systems; building management systems; energy management systems; graphical user interfaces; HVAC control; MIMO control schemes; advanced multiple input multiple output control schemes; building energy management systems; fuzzy linguistic knowledge based behavior extraction; graphical user interface; heating ventilation and air conditioning units; modern buildings; world energy production; Energy efficiency; Floors; Graphical user interfaces; Knowledge based systems; Pragmatics; Sensors; HVAC; building energy efficiency; building occupant comfort; fuzzy logic; knowledge-base;
fLanguage
English
Publisher
ieee
Conference_Titel
Resilient Control Systems (ISRCS), 2013 6th International Symposium on
Conference_Location
San Francisco, CA
Type
conf
DOI
10.1109/ISRCS.2013.6623755
Filename
6623755
Link To Document