Sensor based state estimation for: Stirred tank reactors in chemical industry and for PMUs in angle controlled power systems

Carlos M. Florez, Juan Villa
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Abstract

The problem of state estimation has great relevance in the chemical industry, since many chemical processes involve state variables that are difficult to measure online. This paper compares four different state estimation techniques applied to the model of a continuous stirred tank reactor with three state variables. The estimators employed are an extended Luenberger observer, an extended Kalman filter, a nonlinear sliding mode observer, and a nonlinear sliding mode observer with Kalman-filtered feed. The similarity of the models, for the state estimators, could allow applying them, to perform angular control of power systems with phasor measurement unit sensors (PMUs). The Matlab tool has being used to estimate the dynamic response of the estimated variables and the measurement error.
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基于传感器的状态估计:化工搅拌槽反应器和角控电力系统中pmu的状态估计
状态估计问题在化学工业中具有很大的相关性,因为许多化学过程涉及难以在线测量的状态变量。本文比较了四种不同的状态估计技术在具有三个状态变量的连续搅拌槽式反应器模型中的应用。所采用的估计量包括扩展Luenberger观测器、扩展Kalman滤波器、非线性滑模观测器和带Kalman滤波馈源的非线性滑模观测器。对于状态估计器来说,模型的相似性允许将它们应用于具有相量测量单元传感器(PMUs)的电力系统的角度控制。利用Matlab工具对估计变量的动态响应和测量误差进行了估计。
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