Greenhouse cultivation enables high yields through multi-cropping under controlled environments. Research on the association between crop growth and environmental meteorological factors is crucial for achieving precise dynamic regulation of environmental factors and efficient crop growth management within greenhouse. To address the stability problems of inversion model of crop phenotype-accumulated temperature during different sowing dates, this study analyzed the relationship between color skewed-distribution parameters of cabbage canopy and environmental accumulated temperature during different sowing dates. Three types of canopy color parameters (depth, distribution, and mixed parameters) were used as independent variables to construct inversion models of canopy color-accumulated temperature, and the model’s stability was tested across various growth cycles. The results showed that the skewed-distribution parameters of canopy images were significantly correlated with the environmental accumulated temperature, and the correlation coefficient was generally above 0.8. Among the models, the one using distribution parameters as the main independent variable demonstrated the highest fitting accuracy. For the same sowing date, the fitting accuracy was 87.11% and 91.16%, while for different sowing dates, it remained approximately 85%. These findings provide a useful theoretical basis and practical reference for stable and accurate inversion of accumulated temperature based on crop canopy color phenotype during different growth cycles, offering new insights for intelligent, high-quality and efficient management of facility agriculture.
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Pei Zhang
Qi Chen
Zhengmeng Chen
Plant Growth Regulation
Chinese Academy of Sciences
Institute of Botany
Longyan University
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Zhang et al. (Tue,) studied this question.
www.synapsesocial.com/papers/69a76012c6e9836116a2c7dc — DOI: https://doi.org/10.1007/s10725-025-01421-4
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