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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Disturbance Observer Design for Nonlinear Systems Represented by Input–Output Models
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Disturbance Observer Design for Nonlinear Systems Represented by Input–Output Models

机译:输入输出模型代表的非线性系统的扰动观测器设计

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摘要

A new approach to the design of nonlinear disturbance observers (DOBs) for a class of nonlinear systems described by input-output differential equations is presented in this paper. In contrast with established forms of nonlinear DOBs, the most important feature of this new type of DOB is that only measurement of the output variable is required, rather than the state variables. An inverse simulation model is first constructed based on knowledge of the structure and parameters of a conventional model of the system. The disturbance can then be estimated by comparing the output of the inverse model and the input of the original nonlinear system. Mathematical analysis demonstrates the convergence of this new form of nonlinear DOB. The approach has been applied to disturbance estimation for a linear system and a new form of linear DOB has been developed. The differences between the proposed linear DOB and the conventional form of frequency-domain DOB are discussed through a numerical example. Finally, the nonlinear DOB design method is illustrated through an application involving a simulation of a jacketed continuous stirred tank reactor system.
机译:本文提出了一种新的设计非线性扰动观测器(DOB)的方法,该系统用于由输入-输出微分方程描述的一类非线性系统。与既定形式的非线性DOB相比,这种新型DOB的最重要特征是仅需要测量输出变量,而不是状态变量。首先基于对系统常规模型的结构和参数的了解来构造逆仿真模型。然后可以通过比较反模型的输出和原始非线性系统的输入来估计干扰。数学分析证明了这种新形式的非线性DOB的收敛性。该方法已应用于线性系统的干扰估计,并且开发了一种新形式的线性DOB。通过数值示例讨论了提出的线性DOB与常规形式的频域DOB之间的差异。最后,通过涉及夹套式连续搅拌釜反应器系统仿真的应用说明了非线性DOB设计方法。

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