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Soft Sensor for Inputs and Parameters Using Nonlinear Singular State Observer in Chemical Processes

机译:在化学过程中使用非线性奇异状态观测器的输入和参数软传感器

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摘要

Chemical processes are usually nonlinear singular systems. In this study, a soft sensor using nonlinear singular state observer is established for unknown inputs and uncertain model parameters in chemical processes, which are augmented as state variables. Based on the observability of the singular system, this paper presents a simplified observability criterion under certain conditions for unknown inputs and uncertain model parameters. When the observability is satisfied, the unknown inputs and the uncertain model parameters are estimated online by the soft sensor using augmented nonlinear singular state observer. The riser reactor of fluid catalytic cracking unit is used as an example for analysis and simulation. With the catalyst circulation rate as the only unknown input without model error, one temperature sensor at the riser reactor outlet will ensure the correct estimation for the catalyst cir-culation rate. However, when uncertain model parameters also exist, additional temperature sensors must be used to ensure correct estimation for unknown inputs and uncertain model parameters of chemical processes.
机译:化学过程通常是非线性奇异系统。在这项研究中,建立了一个使用非线性奇异状态观测器的软传感器,用于化学过程中未知的输入和不确定的模型参数,这些参数作为状态变量而增加。基于奇异系统的可观测性,本文针对未知输入和不确定模型参数,在一定条件下提出了一种简化的可观测性准则。当满足可观察性时,软传感器使用增强的非线性奇异状态观测器在线估算未知输入和不确定模型参数。以流化床催化裂化装置的提升管反应器为例进行分析和模拟。将催化剂循环速率作为唯一的未知输入而没有模型误差,提升管反应器出口处的一个温度传感器将确保正确估计催化剂的循环速率。但是,当还存在不确定的模型参数时,必须使用附加的温度传感器以确保对未知输入和化学过程的不确定模型参数进行正确估计。

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