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Hybrid cascade model-based predictive control system

机译:基于混合级联模型的预测控制系统

摘要

A hybrid cascade Model-Based Predictive control (MBPC) and conventional control system for thermal processing equipment of semiconductor substrates, and more in particular for vertical thermal reactors is described. In one embodiment, the conventional control system is based on a PID controller. In one embodiment, the MBPC algorithm is based on both multiple linear dynamic mathematical models and non-linear static mathematical models, which are derived from the closed-loop modeling control data by using the closed-loop identification method. In order to achieve effective dynamic linear models, the desired temperature control range is divided into several temperature sub-ranges. For each temperature sub-range, and for each heating zone, a corresponding dynamic model is identified. During temperature ramp up/down, the control system is provided with a fuzzy control logic and inference engine that switches the dynamic models automatically according to the actual temperature. When a thermocouple (TC) temperature measurement is in failure, a software soft sensor based on dynamic model computing is used to replace the real TC sampling in its place as a control system input. Consequently, when a TC failure occurs during a process, the process can be completed without the loss of the semiconductor substrate(s) being processed.
机译:描述了混合级联的基于模型的预测控制(MBPC)和常规控制系统,用于半导体衬底的热处理设备,尤其是用于垂直热反应器。在一个实施例中,常规控制系统基于PID控制器。在一个实施例中,MBPC算法基于多个线性动态数学模型和非线性静态数学模型两者,它们是通过使用闭环识别方法从闭环建模控制数据导出的。为了获得有效的动态线性模型,将所需的温度控制范围分为几个温度子范围。对于每个温度子范围和每个加热区域,都将确定一个相应的动态模型。在温度上升/下降过程中,控制系统配有模糊控制逻辑和推理引擎,可根据实际温度自动切换动态模型。当热电偶(TC)温度测量失败时,将使用基于动态模型计算的软件软传感器代替实际的TC采样作为控制系统输入。因此,当在处理期间发生TC故障时,可以完成处理而不会损失正在处理的半导体衬底。

著录项

  • 公开/公告号US7006900B2

    专利类型

  • 公开/公告日2006-02-28

    原文格式PDF

  • 申请/专利权人 FRANK HUUSSEN;LIU ZHENDUO;

    申请/专利号US20030619383

  • 发明设计人 FRANK HUUSSEN;LIU ZHENDUO;

    申请日2003-07-14

  • 分类号G05G23/00;

  • 国家 US

  • 入库时间 2022-08-21 21:41:15

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