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Separable Least Squares Identification of a Wiener Model with Application to Powered Air Purifying Respirators

机译:具有应用于供电空气净化呼吸器的维纳模型的可分离最小二乘识别

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Powered Air Purifying Respirator (PAPRs) are respirators that utilise a small centrifugal blower to aid in drawing air through a filter. If the dynamic behaviour of PAPRs with filters can be modelled, adaptive controllers can be made so that air is only supplied through the filter when a user inhales. This paper presents the identification of a Wiener model using a separable least squares method with experimental application to a PAPR. The linear dynamics are shown to fit to an output error model structure, with the nonlinearity being a quadratic function. The model structure is then validated on a PAPR constructed in open loop formation. The validation is furthered by altering the filter resistance to check the performance of the model.
机译:动力空气净化呼吸器(PAPR)是使用小离心式鼓风机的呼吸器,以帮助通过过滤器吸入空气。如果可以建模具有滤波器的PAPR的动态行为,则可以进行自适应控制器,以便仅当用户吸入时通过滤波器提供空气。本文介绍了使用可分离最小二乘法的维纳模型对PAPR的实验应用。线性动力学显示为适合输出误差模型结构,其中非线性是二次函数。然后在开环形成中构造的PAPR上验证模型结构。通过改变滤波器电阻以检查模型的性能来进一步验证。

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