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A dead time compensation approach for multirate observer design with large measurement delays

机译:大型测量延迟多型观察者设计的死区时间补偿方法

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In our previous work, we developed a multirate observer design method in linear systems with asynchronous sampling based on a Luenberger observer design coupled with inter-sample predictors. In this article, the problem of multirate multidelay observer design is addressed where both asynchronous sampling and possible measurement delays are accounted for. The proposed observer adopts an available multirate observer design in the time interval between two consecutive delayed measurements. A dead time compensation approach is developed to compensate for the effect of delay and update past estimates when a delayed measurement arrives. The stability and robustness properties of the multirate observer will be preserved under nonconstant, arbitrarily large measurement delays. A mathematical example and a gas-phase polyethylene reactor example demonstrate good performance of the proposed observer in the presence of nonuniform sampling and nonconstant measurement delays. (c) 2018 American Institute of Chemical Engineers AIChE J, 65: 562-570, 2019
机译:在我们以前的工作中,我们在带有异步采样的线性系统中开发了一种基于Luenberger观察者设计的多型观察者设计方法,其与采样间预测器相耦合。在本文中,解决了异步采样和可能的测量延迟来解决多型多速率观察者设计的问题。所提出的观察者在两个连续延迟测量之间的时间间隔中采用可用的多型观察者设计。开发了死区时间补偿方法,以补偿延迟测量到达时延迟和更新过去估计的影响。多型观察者的稳定性和稳健性属性将在不可间存的,任意大的测量延迟下保留。数学例子和气相聚乙烯反应器示例在存在非均匀采样和不合理的测量延迟存在下,表明所提出的观察者的良好性能。 (c)2018美国化学工程研究所Aiche J,65:562-570,2019

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