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Invited Talk. Relevant Qualitative and Quantitative Choices for Building an Efficient Dynamic Plant Growth Model: GreenLab Case

机译:邀请谈话。建立高效动态植物生长模型的相关定性和定量选择:Greenlab案例

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A systematic study of plant growth modeling is a real challenge for researchers and scientists because multidisciplinary aspects have to be integrated. Through a mathematical formalism, a plant functional-structural model needs to be developed based on knowledge from botany, agronomy, forestry, eco-physiology and computer sciences. Specialists in each discipline have proposed variety models, but most of these models are limited within their own field. It is well recognized that the malfunctioning and the limitations of these models are due to their mono-disciplinary aspects applied. A dialog between the various scientific domains involved in plant modeling is not obvious. It needs to choose, simplify and adapt the relevant knowledge from each other that is necessary and sufficient to build a plant functional-structural model. This needs also to define a right level of observations. Each notion is simplify, but the interactions between them give new theoretical results and applications. Several questions are discussed in this work. How botany gives keys to organize the multi-level information inside the plant topological structure and eventually speed up the growth computing? What kind of mathematical formalism is needed to introduce powerful tools of automatic control into plant modelling? The goal of this paper is to propose simple choices, from both biological and mathematical viewpoints, and adapt them to build an efficient dynamical model. With this model, it is possible to insure optimisation and control that are needed in agronomy.
机译:对植物生长建模的系统研究是研究人员和科学家的真正挑战,因为必须整合多学科方面。通过数学形式主义,需要基于来自植物学,农艺,林业,生态生理学和计算机科学的知识来开发植物功能性结构模型。每个学科的专家都提出了各种型号,但大多数这些模型在自己的领域内有限。很高兴认识到,这些模型的故障和局限性是由于它们的单学科申请。植物建模涉及的各种科学域之间的对话并不明显。它需要选择,简化和调整彼此的相关知识,这是必要的并且足以构建植物功能结构模型。这也需要定义正确的观察水平。每个概念都是简化的,但它们之间的相互作用提供了新的理论结果和应用程序。在这项工作中讨论了几个问题。植物学如何给钥匙组织植物拓扑结构内的多级信息,并最终加快增长计算?需要什么样的数学形式主义来引入强大的自动控制工具进入植物建模?本文的目标是从生物学和数学观点提出简单的选择,并使它们适应构建高效的动态模型。使用此模型,可以确保农艺所需的优化和控制。

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