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A Neuro-Dynamic Programming-Based Optimal Controller for Tomato Seedling Growth in Greenhouse Systems

机译:基于神经动力程序的温室系统番茄幼苗生长最优控制器

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This work proposes a neuro-dynamic programming-based optimal controller to guide the growth of tomato seedling crops by manipulating its environmental conditions in a greenhouse. The neurocontroller manages the growth development of the crop, while minimizing a predefined cost function that considers the operative costs and the final state errors under physical constraints on process variables and actuator signals. The aim is to guide the growth of tomato seedlings by controlling the microclimate of the greenhouse. The design process of the neurocontroller considers the nonlinear dynamic behavior of the crop-greenhouse system model and the real climate data. Simulations of the proposed approach allow for contrasting its performance against those of other strategies for tomato seedling crop development subject to various climatic conditions.
机译:这项工作提出了一种基于神经动力学程序的最佳控制器,通过操纵温室中的环境条件来指导番茄幼苗的生长。神经控制器管理作物的生长发育,同时最小化预定义的成本函数,该函数考虑了操作变量和过程变量和执行器信号的物理约束下的最终状态误差。目的是通过控制温室的小气候来指导番茄幼苗的生长。神经控制器的设计过程考虑了农作物温室系统模型和实际气候数据的非线性动态行为。模拟所提出的方法可以将其性能与其他气候条件不同的番茄幼苗作物发展策略的性能进行对比。

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