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Agitation and mixing processes automation using current sensing and reinforcement learning

机译:使用电流感应和强化学习实现搅拌和混合过程自动化

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摘要

Many agitation and mixing processes utilize various sensors for real-time monitoring and control, which can involve complex and costly equipment. For many mixing and agitation processes, such as in dough making, as mixing energy is placed, the resistance to extension increases and then after some point it decreases again. High-quality bread is obtained by stopping mixing at or close to the maximum resistance. The change in resistance causes a change in motor torque. The torque change affects the motor's current draw for agitation and mixing machines driven by electrical motors. The rheological characteristics of the mixed material are related to motor torque of the mixing machine. Therefore, it is related to the motor electric current where the load variation can be estimated by a low-cost current sensor. This paper outlines a novel design for an intelligent agitator/mixer process controller. The design is based on current sensing and on-line learning through reinforcement learning using operator input. The system provides a low-cost approach to automate various kinds of production equipment currently operated manually, which are common in the developing world. Additionally, the approach requires minimal modification to the equipment: it requires only a current sensor, an on/off control relay, a set of buttons for operation, and an embedded system. (C) 2017 Published by Elsevier Ltd.
机译:许多搅拌和混合过程利用各种传感器进行实时监视和控制,这可能涉及复杂且昂贵的设备。对于许多混合和搅拌过程(例如在面团制作中),放置混合能量时,抗拉伸性会增加,然后在某个点之后会再次降低。通过在最大阻力或接近最大阻力的情况下停止混合即可获得高质量的面包。电阻的变化导致电动机转矩的变化。转矩变化会影响由电动马达驱动的搅拌和混合机的马达电流消耗。混合材料的流变特性与混合机的电动机扭矩有关。因此,与电动机电流有关,其中可以通过低成本电流传感器来估计负载变化。本文概述了一种智能搅拌器/混合器过程控制器的新颖设计。该设计基于电流感应和通过使用操作员输入进行强化学习的在线学习。该系统提供了一种低成本方法来自动化当前在发展中国家普遍使用的各种生产设备。此外,该方法只需要对设备进行最少的修改:它仅需要一个电流传感器,一个开/关控制继电器,一组操作按钮和一个嵌入式系统。 (C)2017由Elsevier Ltd.发布

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