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Transfer Function Modeling of Processes With Dynamic Inputs

机译:具有动态输入的过程的传递函数建模

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摘要

Time series structures, which are common occurrences with data in many industrial processes, complicate a quality practitioner's efforts to accurately position control chart limits. ARIMA modeling and a variety of control charting methods have been recommended for monitoring process data with a time series structure. Estimates of ARIMA model parameters may not be reliable, however, if assignable causes of variation are present in the process data used to fit the time series model. Control limits may also be misplaced if the process inputs are dynamic and exhibiting a time series structure. Our purpose in this paper is to explore the ability of a transfer function model to identify assignable causes of variation and to model dynamic relationships between process inputs and outputs. A transfer function model is developed to monitor biochemical oxygen demand output from a wastewater treatment process, a process with dynamic inputs. This model is used to identify periods of disturbance to the wastewater process and to capture the relationship between the variable nature of the input to the process and the resulting output. Simulation results are included in this study to measure the sensitivity of transfer function models and to highlight conditions where transfer function modeling is critical.
机译:时间序列结构是许多工业过程中数据中经常出现的结构,使质量从业人员为精确定位控制图限制而付出的努力变得复杂。建议使用ARIMA建模和各种控制图表方法来监视具有时间序列结构的过程数据。但是,如果用于拟合时间序列模型的过程数据中存在可指定的变化原因,则ARIMA模型参数的估计值可能并不可靠。如果过程输入是动态的并且显示时间序列结构,则控制极限也可能放错位置。本文的目的是探索传递函数模型识别变化的可指定原因以及对过程输入和输出之间的动态关系进行建模的能力。开发了一个传递函数模型来监视废水处理过程(具有动态输入的过程)中生化需氧量的输出。该模型用于识别对废水过程的扰动周期,并捕获过程输入的可变性质与结果输出之间的关系。仿真结果包括在本研究中,以测量传递函数模型的敏感性并突出显示传递函数建模至关重要的条件。

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