Intermittent Type Reaction Still Temperature Predictive Control

Xiying Ding, Shuping Yang, Shupiu Gong, Huiping Zhai
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Abstract

The intermittent type reaction still inertia is big, lags is in a big way, time-variable is slow, when switching between refrigeration and heating, the misalignment is serious, the traditional PID control to be very difficult to satisfy the performance requirement. Therefore this article is based on the recursion least squares method and the generalized predictive control principle, has designed a set of simple practical control system, on the Kingview platform of Beijing Wellincontrol, uses the traditional PID control in the heating-up period; during 60~70¿ the refrigeration heating switching step, uses the generalized predictive control, solves the vibration which the serious misalignment brings. The experimental result indicated that compares with the traditional PID control plan, this one strengthened system's robustness and the compatibility, the system vibration reduced largely.
间歇式反应釜温度预测控制
间歇式反应仍然惯性大,滞后大,时变慢,在制冷与制热切换时,误差严重,传统的PID控制很难满足性能要求。因此本文基于递归最小二乘法和广义预测控制原理,设计了一套简单实用的控制系统,在北京威林控制的组态王平台上,采用传统的PID控制在预热期;在60~70℃制冷加热切换阶段,采用广义预测控制,解决了严重错位带来的振动。实验结果表明,与传统的PID控制方案相比,该方案增强了系统的鲁棒性和兼容性,大大降低了系统的振动。
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