A stochastic cellular automata model for rice tillering in the system of rice intensification
© Published under licence by IOP Publishing Ltd. Closing the yield gap of rice production is urgently needed to improve food security in the ever-expanding world population. We propose a stochastic cellular automata (CA) model to describe spatial dynamics of rice growth under the system of rice inte...
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th-mahidol.473602019-08-28T13:58:13Z A stochastic cellular automata model for rice tillering in the system of rice intensification Monamorn Precharattana Tanaporn Kajonphol Kasetsart University Mahidol University Physics and Astronomy © Published under licence by IOP Publishing Ltd. Closing the yield gap of rice production is urgently needed to improve food security in the ever-expanding world population. We propose a stochastic cellular automata (CA) model to describe spatial dynamics of rice growth under the system of rice intensification (SRI) to identify best planting practise. Our simulation results reveal sigmoid growth pattern of typical rice vegetative growth. We found that the exponential growth phase was dominantly influenced by the initial planting density, while the saturation growth phase was dominated by the initial spacing density. Planting of one or two or three plants per hill appeared to be suitable for the initial spacing density of 30 x 30 cm2, 40 x 40 cm2, 50 x 50 cm2 or larger, respectively. Our CA model can be used to describe the dynamics of rice vegetative growth, which may be a predictive feature of rice yield. 2019-08-28T06:58:13Z 2019-08-28T06:58:13Z 2018-07-26 Conference Paper Journal of Physics: Conference Series. Vol.1053, No.1 (2018) 10.1088/1742-6596/1053/1/012104 17426596 17426588 2-s2.0-85051364797 https://repository.li.mahidol.ac.th/handle/123456789/47360 Mahidol University SCOPUS https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85051364797&origin=inward |
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Physics and Astronomy Monamorn Precharattana Tanaporn Kajonphol A stochastic cellular automata model for rice tillering in the system of rice intensification |
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© Published under licence by IOP Publishing Ltd. Closing the yield gap of rice production is urgently needed to improve food security in the ever-expanding world population. We propose a stochastic cellular automata (CA) model to describe spatial dynamics of rice growth under the system of rice intensification (SRI) to identify best planting practise. Our simulation results reveal sigmoid growth pattern of typical rice vegetative growth. We found that the exponential growth phase was dominantly influenced by the initial planting density, while the saturation growth phase was dominated by the initial spacing density. Planting of one or two or three plants per hill appeared to be suitable for the initial spacing density of 30 x 30 cm2, 40 x 40 cm2, 50 x 50 cm2 or larger, respectively. Our CA model can be used to describe the dynamics of rice vegetative growth, which may be a predictive feature of rice yield. |
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Kasetsart University |
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Kasetsart University Monamorn Precharattana Tanaporn Kajonphol |
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Conference or Workshop Item |
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Monamorn Precharattana Tanaporn Kajonphol |
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Monamorn Precharattana |
title |
A stochastic cellular automata model for rice tillering in the system of rice intensification |
title_short |
A stochastic cellular automata model for rice tillering in the system of rice intensification |
title_full |
A stochastic cellular automata model for rice tillering in the system of rice intensification |
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A stochastic cellular automata model for rice tillering in the system of rice intensification |
title_full_unstemmed |
A stochastic cellular automata model for rice tillering in the system of rice intensification |
title_sort |
stochastic cellular automata model for rice tillering in the system of rice intensification |
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2019 |
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https://repository.li.mahidol.ac.th/handle/123456789/47360 |
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