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MODEL BASED TAMPERING FORJ IMPROVED PROCESS PERFORMANCE - AN APPLICATION TO GRINDING OF SHAFTS

机译:基于模型的篡改FORJ改进了工艺性能 - 磨削轴的应用

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This paper presents the Model Based Tampering (MBT) methodology to address performance degradation in complex nonlinear processes. MBT involves characterizing the dynamics of a process through experiments to derive Nonlinear Stochastic Differential Equation (n-SDE) models that can accurately and compactly represent a process, and using these models to dynamically compensate for the effects of process degradation on the performance. This research has yielded a new method to derive n-SDE models of complex processes through a signal-based reconstruction of Fokker-Plank equations. MBT was applied to control surface finish during cylindrical grinding of shafts of Air Bearings used in aircraft Environmental Control Systems (ECS)-a core competency of Honeywell. We have proved that the n-SDE models help capture patterns in process outputs that cannot be captured using any simpler models, and that MBT reduces the surface finish variation by 62 percent over the current industry practice.
机译:本文介绍了基于模型的篡改(MBT)方法,以解决复杂非线性过程中的性能下降。 MBT涉及通过实验表征过程的动态,以获得非线性随机微分方程(N-SDE)模型,可以准确且紧凑地代表过程,并使用这些模型动态地补偿过程劣化对性能的影响。该研究通过Fokker-Plank方程的基于信号的重建产生了一种新的方法来导出复杂过程的N-SDE模型。在飞机环境控制系统(ECS)-A霍尼韦尔核心竞争力的空气轴承轴的轴承轴的圆柱形研磨过程中应用于控制表面光洁度。我们已经证明,N-SDE模型有助于捕获过程输出中无法使用任何更简单的型号捕获的模式,并且该MBT在当前行业实践中将表面完成变化降低了62%。

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