Adaptive Neuro-control System for Superheated Steam Temperature of Power Plant over Wide Range Operation

Jian-hang Zhang, G. Hou, Jinfang Zhang
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引用次数: 20

Abstract

In this paper, the dynamics of a superheated steam temperature process in a 600MW supercritical once-through boiler is first analyzed. The dynamics is influenced by the operating conditions represented by steam flow and steam pressure mainly. An intelligent cascade control system is then designed for controlling superheated steam temperature over wide range conditions. The parameter of the proportional controller in the inner loop is fixed all the time. The controller in the main loop is a self-tuning PID neuro-controller whose parameters are adjusted by gradient algorithm, where the Jacobian information of the plant is obtained by RBF neural networks. Finally, the designed control system is applied to control the superheated steam temperature in a 600MW supercritical once-through boiler, and the simulation indicates it has satisfactory performances over wide range
电厂大范围运行过热蒸汽温度的自适应神经控制系统
本文首先对600MW超临界直通式锅炉过热汽温过程进行了动力学分析。其动力学主要受以蒸汽流量和蒸汽压力为代表的工况的影响。然后设计了智能串级控制系统,用于控制大范围的过热蒸汽温度。内环比例控制器的参数一直是固定的。主回路控制器采用自整定PID神经控制器,通过梯度算法调整参数,其中被控对象的雅可比信息由RBF神经网络获取。最后,将所设计的控制系统应用于600MW超临界直通式锅炉的过热蒸汽温度控制,仿真结果表明该控制系统在大范围内具有满意的控制效果
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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