贵州科学
貴州科學
귀주과학
GUIZHOU SCIENCE
2012年
5期
1-5,22
,共6页
王季槐%汪建文%王大霞%S.Christensen%张玉武%卢大远%陈凯荣
王季槐%汪建文%王大霞%S.Christensen%張玉武%盧大遠%陳凱榮
왕계괴%왕건문%왕대하%S.Christensen%장옥무%로대원%진개영
种群生态场%杂草正规斑块%细胞自动机%模拟
種群生態場%雜草正規斑塊%細胞自動機%模擬
충군생태장%잡초정규반괴%세포자동궤%모의
population eco-field%normal patch of weed%cellular automaton%simulation
大田杂草多呈块状或斑块分布。精准农业是现代农业的发展方向,它要求对作物一杂草生态系统进行定量描述并按照杂草斑块的性质(大小、密度等)进行定量的控制。本文对杂草正规型斑块进行了定量描述,即呈正规分布的杂草斑块可用同一的模型来描述,其形状在细胞空间中可以从条形变化到圆形。并将个体生态场概念(wu,et a1.,1985)扩展到群体(种群)。应用作者发展的细胞自动机(Wang et a1.,2003)方法对杂草正规型斑块进行了模拟,结果表明:在一定范围内,(1)杂草的生态场随(圆形)斑块的增大而增大;(2)杂草的生态场随正规分布杂草斑块的形状变化而变化;(3)正规分布的圆形斑块其生态场随密度增加而增加;(4)通过模拟证实密度较高的杂草斑块,或者较大的杂草斑块需要更大的控制力(除草剂);(5)通过模拟证实杂草斑块的形状影响控制力,因此杂草的精确控制应该考虑杂草的形状。
大田雜草多呈塊狀或斑塊分佈。精準農業是現代農業的髮展方嚮,它要求對作物一雜草生態繫統進行定量描述併按照雜草斑塊的性質(大小、密度等)進行定量的控製。本文對雜草正規型斑塊進行瞭定量描述,即呈正規分佈的雜草斑塊可用同一的模型來描述,其形狀在細胞空間中可以從條形變化到圓形。併將箇體生態場概唸(wu,et a1.,1985)擴展到群體(種群)。應用作者髮展的細胞自動機(Wang et a1.,2003)方法對雜草正規型斑塊進行瞭模擬,結果錶明:在一定範圍內,(1)雜草的生態場隨(圓形)斑塊的增大而增大;(2)雜草的生態場隨正規分佈雜草斑塊的形狀變化而變化;(3)正規分佈的圓形斑塊其生態場隨密度增加而增加;(4)通過模擬證實密度較高的雜草斑塊,或者較大的雜草斑塊需要更大的控製力(除草劑);(5)通過模擬證實雜草斑塊的形狀影響控製力,因此雜草的精確控製應該攷慮雜草的形狀。
대전잡초다정괴상혹반괴분포。정준농업시현대농업적발전방향,타요구대작물일잡초생태계통진행정량묘술병안조잡초반괴적성질(대소、밀도등)진행정량적공제。본문대잡초정규형반괴진행료정량묘술,즉정정규분포적잡초반괴가용동일적모형래묘술,기형상재세포공간중가이종조형변화도원형。병장개체생태장개념(wu,et a1.,1985)확전도군체(충군)。응용작자발전적세포자동궤(Wang et a1.,2003)방법대잡초정규형반괴진행료모의,결과표명:재일정범위내,(1)잡초적생태장수(원형)반괴적증대이증대;(2)잡초적생태장수정규분포잡초반괴적형상변화이변화;(3)정규분포적원형반괴기생태장수밀도증가이증가;(4)통과모의증실밀도교고적잡초반괴,혹자교대적잡초반괴수요경대적공제력(제초제);(5)통과모의증실잡초반괴적형상영향공제력,인차잡초적정학공제응해고필잡초적형상。
The distribution of weed in farmland often displays in patch. Precision agriculture, which is a trend of modem agriculture, requires a quantitative crop-weed system to control weed based on characters of weed patches, such as size or density. In this paper, normal patches were defined and described quantitatively, i.e. normal weed patches could be described by the same model. Their shapes may change from strip to round type. The individual eco-field concept (Wu, et al. , 1985 ) was extended to population eco-field. The normal patches were simulated by using CA method ( Wang et al. , 2003 ). The simulation results showed that, to some extent, ( 1 ) the size of the eco-field became larger, with the increment of a normal weed (round) patch; (2) the eeo-field varied with the shape of a normal weed patch ; (3) the eco-fields became larger with the increasing density of the normal (round) patches ; (4) it was proved by the simulation that a larger control power (herbicide) was needed for a higher densi- ty; and (5) the weed patch shape influenced the control power, thus the weed patch shape should be taken into account when a precision weed control was applied.