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An improved optimal model for energy-saving of belt conveyors based on genetic algorithm

机译:基于遗传算法的带式输送机节能优化模型的改进

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The paper presents optimal control modeling study for energy-saving of belt conveyor system. Given the transport operations process of bulk terminals, belt conveyor is studied. Firstly, based on the simplified energy calculation model of the belt conveyor, an objective optimization model with the aim to improve transport efficiency and reduce transportation energy consumption is established. In the model, constrains of the belt with the bulk transport capacity, velocity and time limits and the storage capacities are considered. Among them, velocity limits is achieved by dynamic analysis based on establishing finite element model. And then according to the proposed improved optimal model, the genetic algorithm is designed to solve this model. At last, the genetic algorithm is designed to verify the effectiveness of the proposed model, and experiments on MATLAB is conducted. The simulation results reveal that this method can effectively reduce energy consuming in belt transport system and improve delivery devices efficiency.
机译:提出了皮带输送机系统节能的最优控制模型研究。考虑到散货码头的运输过程,对皮带输送机进行了研究。首先,基于带式输送机的简化能量计算模型,建立了旨在提高运输效率,降低运输能耗的目标优化模型。在模型中,考虑了皮带的约束条件,包括运输容量,速度和时间限制以及存储容量。其中,在建立有限元模型的基础上,通过动态分析实现了速度极限。然后根据提出的改进的最优模型,设计了遗传算法对该模型进行求解。最后,设计了遗传算法来验证所提模型的有效性,并在MATLAB上进行了实验。仿真结果表明,该方法可以有效降低皮带运输系统的能耗,提高输送装置的效率。

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