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Implementing a Real-Time, Energy-Efficient Control Methodology to Maximize Manufacturing Profits

机译:实施实时节能控制方法以最大化制造利润

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In modern manufacturing facilities it is imperative to maximize profits by reducing energy costs while maintaining or enhancing production operations. To achieve this goal, one must understand the complex energy dynamics of the manufacturing system to properly identify inefficiencies and energy savings opportunities on the production line. The energy system dynamics focus on how energy is consumed by the production line at any given time. The energy profit bottleneck (EP-BN) is defined, which provides the machine that, when the downtime is reduced, leads to the highest overall profit increase. This EP-BN is a more general definition over the traditional throughput bottleneck. The EP-BN explicitly considers the cost of energy, which was previously ignored or treated as insignificant in traditional throughput analysis. This bottleneck is used in conjunction with an energy opportunity window control methodology that reduces overall energy consumption while maintaining throughput. The energy opportunity window duration and frequency is numerically analyzed for a real-time control scheme.
机译:在现代化的生产设施中,必须在保持或提高生产运营的同时,通过降低能源成本来实现利润最大化。为了实现这一目标,必须了解制造系统的复杂能源动态,以正确地识别生产线上的低效率和节能机会。能源系统动力学着眼于在任何给定时间生产线如何消耗能源。定义了能源利润瓶颈(EP-BN),这使机器在停机时间减少时可以带来最高的整体利润增长。与传统的吞吐量瓶颈相比,此EP-BN具有更一般的定义。 EP-BN明确考虑了能源成本,以前在传统的吞吐量分析中忽略或认为能源成本微不足道。此瓶颈与能源机会窗口控制方法结合使用,该方法可在保持吞吐量的同时减少总能耗。对能量机会窗口的持续时间和频率进行了数值分析,以实现实时控制方案。

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