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Greenhouse temperature control with wooden pellet fuel using adaptive weight

机译:使用自适应重量的木质颗粒燃料控制温室温度

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This study proposes the design of a temperature controller for a greenhouse using a wooden pellet heating system. This heater uses carbon-neutral fuel, however, it has several undesirable characteristics from the viewpoint of control. To compensate for these typical issues, model predictive control is applied to regulate the temperature, and the control performance is experimentally evaluated in a greenhouse. On the other hand, the total fuel cost for greenhouse heating, which consists of the consumption of wooden pellets and lamp oil, should also be considered as an optimal problem. Furthermore, how to choose the weight on total cost remains an open question. In this study, the concept of adaptive weight is introduced to optimize the system performance including the total fuel cost for heating. The key to solve this problem is to consider the admissible temperature control error that is given by each vegetable, fruit, and flower via the optimal growing temperature depending on the growing process. The simulation results verify the effectiveness of the proposed method.
机译:这项研究提出了一种使用木质颗粒加热系统的温室温度控制器的设计。该加热器使用碳中性燃料,但是,从控制的角度来看,它具有一些不良的特性。为了补偿这些典型问题,应用模型预测控制来调节温度,并在温室中通过实验评估控制性能。另一方面,温室采暖的总燃料成本(包括木屑颗粒和灯油的消耗)也应被视为最佳问题。此外,如何选择总成本的权重仍然是一个悬而未决的问题。在这项研究中,引入了自适应权重的概念来优化系统性能,包括用于加热的总燃料成本。解决此问题的关键在于,根据蔬菜的生长过程,通过最佳的生长温度考虑每种蔬菜,水果和花卉所允许的温度控制误差。仿真结果验证了该方法的有效性。

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