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Implementation of an integrated production and electricity optimization system in melt shop

机译:在熔炼车间实施集成的生产和电力优化系统

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The production of stainless steel begins by melting of scrap in melt shop that is known as one of the most electricity intensive processes. Volatile and uncertain renewable energy sources cause high fluctuations in electricity prices and thus usually higher costs for the final user such as a melt shop. This paper presents an integrated production and electricity optimization system that can help the melt shop to adjust its production schedule to volatile electricity prices and thus lower its costs. An existing production scheduling optimization system based on a continuous-time mixed-integer linear programming model has been further developed to account for electricity costs as well. It deploys an intelligent heuristics which decomposes the overall optimization problem into several sub-problems of smaller size in order to achieve faster and more robust solution. The electricity-aware optimization system has been successfully tested and implemented in a melt shop where it managed to reduce electricity costs by around 3%. At the same time, the system has improved coordination between different production stages, and thus made the entire melt shop more flexible, agile and responsive to unexpected events. The system has also been recognized as a very useful tool for running various simulations, what-if analysis and business scenarios on the melt shop in order to identify bottlenecks and further increase its production rate. (C) 2016 Elsevier Ltd. All rights reserved.
机译:不锈钢的生产从熔化车间的废料熔化开始,这是最耗电的过程之一。挥发性和不确定的可再生能源会导致电价的大幅波动,因此通常给最终用户(如熔炼厂)带来更高的成本。本文提出了一个集成的生产和电力优化系统,可以帮助熔炼车间调整其生产计划以适应波动的电价,从而降低其成本。还进一步开发了基于连续时间混合整数线性规划模型的现有生产计划优化系统,以解决电费问题。它部署了一种智能试探法,该试探法将整个优化问题分解为几个较小的子问题,以实现更快,更可靠的解决方案。电力感知优化系统已在熔炼车间成功测试并实施,该系统设法将电力成本降低了约3%。同时,该系统改善了不同生产阶段之间的协调性,从而使整个熔体车间更加灵活,敏捷,并对突发事件做出了响应。该系统还被认为是在熔炼车间运行各种模拟,假设分析和业务场景以识别瓶颈并进一步提高生产率的非常有用的工具。 (C)2016 Elsevier Ltd.保留所有权利。

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