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Determining stress cycles for belt conveyor speed control in transient operations

机译:在瞬态操作中确定带式输送机速度控制的应力循环

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Belt conveyors are important equipment for large-scale bulk material transport and logistic distribution in very wide industry fields. In line with the variance of material loading degree, belt conveyor speed control has been proved as an effective way to reduce power consumption and to improve the service of the equipment with respect to system lifetime and maintenance. Since discrete control is preferred to regulate the speed of conveyor, control methods based on fuzzy logic can be applied. However, speed control is not always applicable for all conveyor operation scenarios. The stress cycles generated during fuzzy speed control in transient operations may lead to extra degradation of the equipment and should be limited. This paper presents the determination of the stress cycles during the fuzzy control for belt conveyor transient operations. After categorizing the loading scenarios that can be normally found in different application fields, the outputs of modeling and simulating a fuzzy speed control system display the effect of stress cycles on belt conveyor operations. The determination of minimum stress cycles along with maximum energy savings can be used to improve the algorithm and settings of belt conveyor speed control systems.
机译:皮带输送机是广泛的工业领域大型散装材料运输和物流分布的重要设备。符合材料加载程度的差异,已经证明了皮带输送机速度控制作为降低功耗的有效方法,并改善了系统寿命和维护的设备的服务。由于离散控制是优选调节输送机的速度,因此可以应用基于模糊逻辑的控制方法。但是,速度控制并不总是适用于所有传送带操作场景。在瞬态操作中模糊速度控制期间产生的应力循环可能导致设备的额外劣化,并且应该受到限制。本文介绍了在皮带输送机瞬态操作的模糊控制过程中的应力循环的确定。在对不同应用领域中通常发现的加载方案进行分类后,建模和模拟模糊速度控制系统的输出显示了应力循环对皮带输送机操作的影响。最小应力循环的确定以及最大节省的确定可用于改善带式输送机速度控制系统的算法和设置。

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