Active control of the growth trajectory of broiler chickens based on online animal responses

被引:31
作者
Aerts, JM
Van Buggenhout, S
Vranken, E
Lippens, M
Buyse, J
Decuypere, E
Berckmans, D
机构
[1] Catholic Univ Louvain, Dept Agroengn & Econ, Lab Agr Bldg Res, B-3001 Louvain, Belgium
[2] Minist Flemish Community, Agr Res Ctr Ghent, Dept Anim Nutr & Husb Small Stock Husb, B-9820 Merelbeke, Belgium
[3] Catholic Univ Louvain, Dept Anim Prod, Lab Physiol & Immunol Domest Anim, B-3001 Louvain, Belgium
关键词
bioresponse; broiler; growth control; online modeling; prediction;
D O I
10.1093/ps/82.12.1853
中图分类号
S8 [畜牧、 动物医学、狩猎、蚕、蜂];
学科分类号
0905 ;
摘要
The objective of the research reported here was to control the growth trajectory of broiler chickens during the production process based on an adaptive compact dynamic process model. More specifically, the daily feed supply was calculated, based on a model-based control algorithm, with the aim of following a previously defined target growth trajectory as close as possible. For the modeling of the dynamic growth response of broiler chickens to the control input, feed supply, an online parameter estimation was used. The developed control algorithm was able to grow the birds according to different target trajectories ranging from restricted (final BW of 1,800 g and 1,945 g in experiments 1 and 3, respectively) to compensatory growth trajectories (final BW of 2,400 g and 2,100 g in experiments 2 and 4, respectively). The mean relative error (MIZE) between the different predefined target growth trajectories and the realized growth trajectories ranged from 3.7% to 6.0%. With a few exceptions, the numerical values of feed conversion ratio and mortality after wk 1 were lower and the values of uniformity index were higher in the controlled groups compared with animals fed ad libitum. As a conclusion, it can be stated that integration of dynamic data-based modeling approaches with new hardware and sensing techniques to measure information from the animals should make it possible to control broiler growth trajectories.
引用
收藏
页码:1853 / 1862
页数:10
相关论文
共 43 条
[1]   Recursive prediction of broiler growth response to feed intake by using a time-variant parameter estimation method [J].
Aerts, JM ;
Lippens, M ;
De Groote, G ;
Buyse, J ;
Decuypere, E ;
Vranken, E ;
Berckmans, D .
POULTRY SCIENCE, 2003, 82 (01) :40-49
[2]   Modelling the static and dynamic responses of total heat production of broiler chickens to step changes in air temperature and light intensity [J].
Aerts, JM ;
Berckmans, D ;
Saevels, P ;
Decuypere, E ;
Buyse, J .
BRITISH POULTRY SCIENCE, 2000, 41 (05) :651-659
[3]  
[Anonymous], 1991, CONTROL SYSTEM DESIG
[4]  
[Anonymous], 2003, Model Predictive Control
[5]   PROCESS CONTROL - PAST, PRESENT, AND FUTURE. [J].
Astroem, Karl Johan .
IEEE Control Systems Magazine, 1985, 5 (03) :3-10
[6]   COMPENSATORY GROWTH IN TURKEYS - EFFECT OF UNDERNUTRITION ON SUBSEQUENT PROTEIN REQUIREMENTS [J].
AUCKLAND, JN ;
MORRIS, TR .
BRITISH POULTRY SCIENCE, 1971, 12 (01) :41-&
[7]   DYNAMICS OF VENTILATION, HEART-RATE, AND GAS-EXCHANGE - SINUSOIDAL AND IMPULSE WORK LOADS IN MAN [J].
BAKKER, HK ;
STRUIKENKAMP, RS ;
DEVRIES, GA .
JOURNAL OF APPLIED PHYSIOLOGY, 1980, 48 (02) :289-301
[8]   DEVELOPMENT OF NEW CONTROL TECHNIQUES FOR THE VENTILATION AND HEATING OF LIVESTOCK BUILDINGS [J].
BERCKMANS, D ;
GOEDSEELS, V .
JOURNAL OF AGRICULTURAL ENGINEERING RESEARCH, 1986, 33 (01) :1-12
[9]  
BEYERLY TC, 1967, SCIENCE, V157, P890
[10]   EFFECTS OF LIGHTING PATTERN AND DIETARY TRYPTOPHAN SUPPLEMENTATION ON GROWTH AND MORTALITY IN BROILERS [J].
BLAIR, R ;
NEWBERRY, RC ;
GARDINER, EE .
POULTRY SCIENCE, 1993, 72 (03) :495-502