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首页> 外文期刊>Journal of Cleaner Production >Integrated condition-based planning of production and utility systems under uncertainty
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Integrated condition-based planning of production and utility systems under uncertainty

机译:不确定条件下基于条件的生产和公用事业系统集成计划

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摘要

A general rolling horizon optimization framework for the integrated condition-based operational and maintenance planning of production and utility systems in process industries is presented. In brief, the proposed optimization framework considers for the production and utility units: (i) improved unit performance degradation and recovery models that depend on both the cumulative time of operation and the unit operating levels deviation of units; (ii) modified operating capacities under online cleaning periods; (iii) different types of cleaning tasks (flexible time-window and online or offline condition based); (iv) alternative options for offline cleaning tasks; (v) limited availability of cleaning resources; (vi) the initial state of the overall system at the beginning of each planning horizon; and (vii) terminal constraints for the rolling horizon problem. Total cost constitutes the objective function of the resulting problem and includes unit operating costs, cleaning costs, energy consumption costs and resource purchases costs. The case studies solved show that when compared to solutions obtained by sequential approaches the proposed integrated approach provides significantly better solutions in terms of total costs (reduction from 5% to 32%), and especially in cost terms related to utility units operation, energy consumption, cleaning and startup/shutdown operations. Unnecessary cleanings and purchases of resources can be avoided by the proposed integrated approach. Overall, the significant reduction in total costs is a direct result of the enhanced energy efficiency of the overall system through the efficient generation and use of energy, the improved utilization of energy and material resources resulting in a more sustainable and cleaner production practices. (C) 2017 Elsevier Ltd. All rights reserved.
机译:提出了用于过程工业中生产和公用事业系统基于条件的集成运维计划的通用滚动优化框架。简而言之,所提出的优化框架考虑了生产和公用事业单位:(i)改进的单位性能下降和恢复模型,该模型取决于累积的运行时间和单位的单位运行水平偏差; (ii)在线清洁期内的已修改运营能力; (iii)不同类型的清洁任务(基于灵活的时间窗口以及基于在线或离线状态的清洁); (iv)离线清洁任务的替代选项; (v)清洁资源有限; (vi)每个计划阶段开始时整个系统的初始状态; (vii)滚动地平线问题的终端约束。总成本构成了所产生问题的客观功能,包括单位运营成本,清洁成本,能源消耗成本和资源购买成本。解决的案例研究表明,与通过顺序方法获得的解决方案相比,该提议的集成方法在总成本(从5%降低到32%)方面,尤其是在与公用事业运营,能源消耗相关的成本方面,提供了更好的解决方案,清洁和启动/关闭操作。通过提议的集成方法可以避免不必要的清洗和资源购买。总体而言,总成本的显着降低是通过有效产生和使用能源提高整体系统的能源效率,提高能源和材料资源利用率从而导致更可持续和更清洁的生产实践的直接结果。 (C)2017 Elsevier Ltd.保留所有权利。

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