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Operating optimality assessment based on optimality related variations and nonoptimal cause identification for industrial processes

机译:基于与最优性相关的变量和非最优原因识别的工业过程运行最优性评估

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In this study, a novel online operating optimality assessment based on optimality related variations and nonoptimal cause identification method is proposed for industrial processes. The optimality related variations are extracted from each steady performance grade by analyzing the common and unique variations among steady performance grades, which avoids the time-consuming data alignment. When the optimality related variations are used in assessment, both the robustness and sensitivity of the assessment method are improved compared with the PCA-based assessment for its abilities in highlighting the process variations related to operating performance and excluding those unrelated variations. Based on the similarities between the optimality related variations of the online data and that of each steady performance grade, the process operating performance can be evaluated as the steady performance grade or the conversion process between performance grades, and this provides more information for the in-depth understanding of the process operating. For nonoptimal operating performance, the nonoptimal cause identification strategy is developed for further production adjustment and performance improvement. Finally, the efficiency of the proposed method is illustrated with a case of gold hydrometallurgical process. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在这项研究中,提出了一种基于最优相关变化和非最优原因识别方法的在线工业最优评估方法。通过分析稳定绩效等级之间的常见和唯一差异,可以从每个稳定绩效等级中提取与最优性相关的变化,从而避免了耗时的数据调整。与基于PCA的评估相比,在评估中使用与最优性相关的变异时,评估方法的鲁棒性和敏感性都得到了提高,因为它具有突出显示与操作性能相关的过程变异并排除那些无关的变异的能力。根据在线数据的最佳化相关变化与每个稳定绩效等级之间的相似性,可以将过程操作绩效评估为稳定绩效等级或绩效等级之间的转换过程,这可为深入了解流程运作。对于非最佳的运行性能,开发了非最佳的原因识别策略,用于进一步的生产调整和性能改进。最后,以金湿法冶金为例说明了该方法的有效性。 (C)2015 Elsevier Ltd.保留所有权利。

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