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Systematic calibration of a simulated semi-autogenous/ball-mill grinding circuit

机译:模拟半自动/球磨机研磨电路的系统校准

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With no doubt, modeling and simulation are powerful tools improving the performance of current optimisation and control strategies. At least in the mineral processing field, however, one of the major gaps in literature is that authors frequently skip specific details on the model calibration methodologies, mainly those concerning data acquisition and processing, calibration sequence, cost function formulation (including constraints), optimisation problem solution, parameter uncertainty, etc. As a contribution to that matter, this paper presents a detailed calibration procedure for a grinding circuit model from plant and laboratory data. The methodology integrates both a global search routine to avoid cost function local minima, and a Jack-knife resampling and recalibration technique to estimate the parameter confidence. The simulator will serve in future work for the coupling of separation processes, and thus the development of plant-wide model-based optimisation and control strategies.
机译:毫无疑问,建模和仿真是强大的工具,提高了当前优化和控制策略的性能。然而,至少在矿物加工领域,文献中的主要差距之一是作者经常跳过模型校准方法的具体细节,主要是关于数据采集和处理,校准序列,成本函数配方(包括约束),优化问题解决方案,参数不确定性等作为对此事项的贡献,本文提出了一种从工厂和实验室数据的研磨电路模型的详细校准程序。该方法集成了全局搜索例程,避免成本函数局部最小值,以及千斤顶重采样和重新校准技术,以估算参数置信度。模拟器将在将来的工作中用于耦合分离过程,从而开发植物 - 基于模型的优化和控制策略。

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