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Neural-Fuzzy Digital Strategy of Continuous-Time Nonlinear Systems Using Adaptive Prediction and Random-Local-Optimization Design

机译:基于自适应预测和随机局部优化设计的连续时间非线性系统神经模糊数字策略

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摘要

A tracking problem, time-delay, uncertainty and stability analysis of a predictive control system are considered. The predictive control design is based on the input and output of neural plant model (NPM), and a recursive fuzzy predictive tracker has scaling factors which limit the value zone of measured data and cause the tuned parameters to converge to obtain a robust control performance. To improve the further control performance, the proposed random-local-optimization design (RLO) for a model/controller uses offline initialization to obtain a near global optimal model/controller. Other issues are the considerations of modeling error, input-delay, sampling distortion, cost, greater flexibility, and highly reliable digital products of the model-based controller for the continuous-time (CT) nonlinear system. They are solved by a recommended two-stage control design with the first-stage (offline) RLO and second-stage (online) adaptive steps. A theorizing method is then put forward to replace the sensitivity calculation, which reduces the calculation of Jacobin matrices of the back-propagation (BP) method. Finally, the feedforward input of reference signals helps the digital fuzzy controller improve the control performance, and the technique works to control the CT systems precisely.
机译:考虑了预测控制系统的跟踪问题,时延,不确定性和稳定性分析。预测控制设计基于神经工厂模型(NPM)的输入和输出,并且递归模糊预测跟踪器具有缩放因子,这些缩放因子限制了测量数据的值区域并导致调整后的参数收敛以获得鲁棒的控制性能。为了提高进一步的控制性能,为模型/控制器提出的随机局部优化设计(RLO)使用离线初始化来获得近似全局最优模型/控制器。其他问题是对连续时间(CT)非线性系统的基于模型的控制器的建模误差,输入延迟,采样失真,成本,更大的灵活性以及高度可靠的数字产品的考虑。通过推荐的两阶段控制设计可以解决这些问题,该设计具有第一阶段(离线)RLO和第二阶段(在线)自适应步骤。然后提出了一种理论化的方法来代替灵敏度计算,这减少了反向传播(BP)方法的雅可比矩阵的计算。最后,参考信号的前馈输入有助于数字模糊控制器改善控制性能,并且该技术可精确控制CT系统。

著录项

  • 来源
    《Mathematical Problems in Engineering》 |2013年第4期|836414.1-836414.12|共12页
  • 作者

    Zhi-Ren Tsai;

  • 作者单位

    Department of Computer Science & Information Engineering, Asia University, Taichung 41354, Taiwan;

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  • 正文语种 eng
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