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A Two-Time Scale Decentralized Model Predictive Controller Based on Input and Output Model

机译:基于输入和输出模型的二次尺度分散模型预测控制器

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摘要

A decentralized model predictive controller applicable for some systems which exhibit different dynamic characteristics in different channels was presented in this paper. These systems can be regarded as combinations of a fast model and a slow model, the response speeds of which are in two-time scale. Because most practical models used for control are obtained in the form of transfer function matrix by plant tests, a singular perturbation method was firstly used to separate the original transfer function matrix into two models in two-time scale. Then a decentralized model predictive controller was designed based on the two models derived from the original system. And the stability of the control method was proved. Simulations showed that the method was effective.
机译:本文提出了一种适用于在不同通道表现出不同动态特性的系统的分散模型预测控制器。这些系统可以看作是快速模型和慢速模型的组合,其响应速度为两倍。由于用于控制的大多数实用模型都是通过传递函数矩阵的形式通过工厂测试获得的,因此首先采用奇异摄动法将原始传递函数矩阵以两个比例分为两个模型。然后,基于从原始系统派生的两个模型,设计了一个分散模型预测控制器。并证明了该控制方法的稳定性。仿真表明该方法是有效的。

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