DocumentCode :
3586147
Title :
An optimized control method of multifactor for greenhouse microclimate based on crop photosynthesis rate
Author :
Xianzhou Huang ; Lihong Xu ; Wei Ruihua
Author_Institution :
Coll. of Electron. & Inf. Eng., Tongji Univ., Shanghai, China
fYear :
2014
Firstpage :
482
Lastpage :
487
Abstract :
According to the recent situation that there is less feasible greenhouse controlling strategy been presented, an optimized energy-saving control method of multifactor for greenhouse is proposed in this paper considering of photosynthetic rate of crops. The data of crops photosynthesis rates in greenhouse are acquired by field tests. Using the data of solar radiation and CO2 concentration inside greenhouse in Jiading, Shanghai, the light-photosynthesis and CO2-photosynthesis response curves are fitted respectively. Thus, via these fitting photosynthesis models and the collected climate data, we could get the real-time crops photosynthetic rate, which is modified in the respect of other greenhouse environment factors, such as temperature and CO2 concentration. Finally, take the environmental multifactorial control algorithm, already in use, as the basic control strategy, a feasible control output is computed and given, so as to promote crop photosynthesis yield and reduce greenhouse control cost. This control strategy integrates with three simplified models, crops growth model, greenhouse control model and energy consumption model.
Keywords :
crops; energy conservation; greenhouses; optimal control; photosynthesis; Jiading; Shanghai; crop photosynthesis rate; crops growth model; energy consumption model; energy-saving control method; environmental multifactorial control algorithm; greenhouse control cost; greenhouse control model; greenhouse controlling strategy; greenhouse environment factors; greenhouse microclimate; light-photosynthesis; optimized control method; photosynthesis models; Actuators; Agriculture; Air pollution; Biological system modeling; Fitting; Green products; Mathematical model; greenhouse model; multifactor; photosynthesis rate; resource cost;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Sciences and Techniques of Automatic Control and Computer Engineering (STA), 2014 15th International Conference on
Type :
conf
DOI :
10.1109/STA.2014.7086755
Filename :
7086755
Link To Document :
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