...
首页> 外文期刊>Annals of Botany >AmapSim: a structural whole-plant simulator based on botanical knowledge and designed to host external functional models.
【24h】

AmapSim: a structural whole-plant simulator based on botanical knowledge and designed to host external functional models.

机译:AmapSim:一种基于植物学知识的结构化全厂模拟器,旨在承载外部功能模型。

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Background and Aims: AmapSim is a tool that implements a structural plant growth model based on a botanical theory and simulates plant morphogenesis to produce accurate, complex and detailed plant architectures. This software is the result of more than a decade of research and development devoted to plant architecture. New advances in the software development have yielded plug-in external functions that open up the simulator to functional processes. Methods: The simulation of plant topology is based on the growth of a set of virtual buds whose activity is modelled using stochastic processes. The geometry of the resulting axes is modelled by simple descriptive functions. The potential growth of each bud is represented by means of a numerical value called physiological age, which controls the value for each parameter in the model. The set of possible values for physiological ages is called the reference axis. In order to mimic morphological and architectural metamorphosis, the value allocated for the physiological age of buds evolves along this reference axis according to an oriented finite state automaton whose occupation and transition law follows a semi-Markovian function. Key Results: Simulations were performed on tomato plants to demonstrate how the AmapSim simulator can interface external modules, e.g. a GREENLAB growth model and a radiosity model. Conclusions: The algorithmic ability provided by AmapSim, e.g. the reference axis, enables unified control to be exercised over plant development parameter values, depending on the biological process target: how to affect the local pertinent process, i.e. the pertinent parameter(s), while keeping the rest unchanged. This opening up to external functions also offers a broadened field of applications and thus allows feedback between plant growth and the physical environment.
机译:背景和目的:AmapSim是一种工具,可根据植物学原理实施结构化植物生长模型,并模拟植物形态发生,以产生准确,复杂和详细的植物结构。该软件是十多年来致力于植物架构研究和开发的结果。软件开发的新进展产生了插件外部功能,这些功能使模拟器向功能过程开放。方法:植物拓扑结构的仿真基于一组虚拟芽的生长,这些芽的活动使用随机过程进行建模。结果轴的几何形状通过简单的描述函数建模。每个芽的潜在生长通过称为生理年龄的数值表示,该数值控制模型中每个参数的值。生理年龄的一组可能值称为参考轴。为了模拟形态和建筑变形,分配给芽的生理年龄的值根据定向的有限状态自动机沿着该参考轴演化,该有限状态自动机的职业和过渡律遵循半马尔可夫函数。主要结果:在番茄植株上进行了仿真,以演示AmapSim模拟器如何与外部模块(例如, GREENLAB增长模型和辐射度模型。结论:AmapSim提供的算法能力,例如参考轴可以根据植物的生物学过程目标对植物发育参数值进行统一控制:如何影响局部相关过程,即相关参数,而其余参数保持不变。这种对外部功能的开放还提供了广阔的应用领域,因此可以在植物生长和物理环境之间提供反馈。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号