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Effect of Varying Controller Parameters in Closed-Loop Subspace Identification

机译:不同控制器参数在闭环子空间识别中的影响

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摘要

It is well known that subspace identification methods that assume open loop data without correlations between the input and noise, may give biased estimates when applied to closed loop data. The effect of the controller gain parameters on the quality of the identified model is studied when closed loop data are used. Several subspace identification methods (both open loop and closed loop methods), and different simulated data sets ranging from ideal 2x2 linear systems, to a fairly realistic nonlinear debutanizer process simulator, are considered. The results show that up to a point, higher controller gain during the identification experiment gives more accurate models than with lower controller gain, for both open and closed loop subspace identification methods. It is observed that the sensitivity to the controller gain is very small for the closed loop sub-space method tested for the ideal cases when its assumptions are satisfied. An explaination for this is that in this case there will be no bias, while the open loop methods may have a bias that depends on the controller parameters. Another interesting observation is that for the debutanizer example, the nonlinearities seem to lead to biased estimates also with the closed loop subspace method, and the choice of controller gain appears to be just as important as the use of a closed loop subspace identification method for the accuracy of the estimates.
机译:众所周知,当应用于闭环数据时,假设在没有相关的不相关的不相关的不相关的开环数据的子空间识别方法可以给出偏置估计。在使用闭环数据时,研究了控制器增益参数对所识别模型质量的影响。考虑了几种子空间识别方法(两个开环和闭环方法)以及从理想的2x2线性系统的不同模拟数据集,以相当逼真的非线性解放器处理模拟器。结果表明,在识别实验期间,较高的控制器增益较高,为开放和闭环子空间识别方法提供比较低控制器增益更精确的模型。观察到,对于在满足其假设的理想情况下测试的闭环子空间方法,对控制器增益的敏感性非常小。这样的解释是,在这种情况下,没有偏差,而开环方法可以具有取决于控制器参数的偏差。另一个有趣的观察是,对于Debutanizer示例,非线性似乎与闭环子空间方法也导致偏置估计,并且控制器增益的选择似乎与使用闭环子空间识别方法一样重要估计的准确性。

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