首页> 外文会议>2009年中国控制与决策会议(2009 Chinese Control and Decision Conference)论文集 >Intelligent PID Controller Design with Adaptive Criterion Adjustment via Least Squares Support Vector Machine
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Intelligent PID Controller Design with Adaptive Criterion Adjustment via Least Squares Support Vector Machine

机译:通过最小二乘支持向量机进行自适应准则调整的智能PID控制器设计。

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PID controllers have been widely used in many industries. They can provide robust and reliable performance for most systems. However, it is very important to tune the PID parameters properly. There is a large variety of methods for tuning the PID parameters. But none of them can cope with the wide system uncertainties. The main motivation in this paper is to present a design scheme of controllers using the LS-SVM which achieve to self-tune the parameter. This method used LS-SVM to identify the predictive model of the system off-line, then linearized the model in local on-line for reducing computation, and combined the general minimum variance to self-tune the PID parameters. The controller has a better effect than the conventional PID controller. Simulation study shows the effectiveness and good performance.
机译:PID控制器已广泛应用于许多行业。它们可以为大多数系统提供强大而可靠的性能。但是,正确调整PID参数非常重要。有多种方法可用于调整PID参数。但是它们都无法应对广泛的系统不确定性。本文的主要动机是提出一种使用LS-SVM的控制器设计方案,该方案可实现参数的自调整。该方法使用LS-SVM离线识别系统的预测模型,然后在本地在线对模型进行线性化以减少计算量,并结合一般的最小方差对PID参数进行自调整。与传统的PID控制器相比,该控制器具有更好的效果。仿真研究表明了该方法的有效性和良好的性能。

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