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首页> 外文期刊>Journal of Advanced Mechanical Design, Systems, and Manufacturing >Method for operating energy-saving idle facilities on production lines considering breakdowns
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Method for operating energy-saving idle facilities on production lines considering breakdowns

机译:考虑故障的生产线上节能闲置设施的运行方法

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In recent years, reducing standby electric power consumption by individual production facilities has been studied to reduce their energy consumption, particularly regarding machine tools, industrial robots, etc., which are principal types of facilities in production systems. Energy-saving idle state capable production facilities (energy-saving idle facilities) have been developed and have begun to be commercialized. They can be in the normal idle state, permitting the quick startup of production from their idle state to reduce energy. Specifically, auxiliary machines unused during idling are shut down, thus minimizing electric power consumption. Such an idle state is defined as the energy-saving idle state (eco-idle state). The research and development of energy-saving idle facilities is advancing, but a lack of effective methods to operate production lines after energy-saving idle facilities have been introduced on these lines is hindering their introduction. Past research has proposed methods for operating energy-saving idle facilities on production lines. However, breakdowns occurring in production facilities have not been considered. This paper proposes a method for operating energy-saving idle facilities on production lines considering breakdowns. The method consists of an idle-time prediction algorithm and an idle-state selection algorithm. Case studies are presented to confirm the effectiveness of the proposed method.
机译:近年来,已经研究了减少单个生产设施的待机电力消耗以降低其能耗,特别是在机床,工业机器人等方面,这是生产系统中设施的主要类型。具有节能闲置状态的生产设备(节能闲置设备)已经开发并开始商业化。它们可以处于正常的闲置状态,从而允许从闲置状态快速启动生产以减少能耗。具体地,空转期间未使用的辅助机器被关闭,从而使电力消耗最小化。将这种空闲状态定义为节能空闲状态(生态空闲状态)。节能闲置设施的研究与开发正在发展,但是在这些生产线上引入了节能闲置设施之后,缺乏有效的生产线运行方法。过去的研究提出了在生产线上运行节能闲置设施的方法。但是,尚未考虑生产设备中发生的故障。提出了一种考虑故障的生产线上节能闲置设施的运行方法。该方法包括空闲时间预测算法和空闲状态选择算法。进行案例研究以确认所提出方法的有效性。

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