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Optimization of boiler start-up using a nonlinear boiler model and hard constraints

机译:使用非线性锅炉模型和硬约束优化锅炉启动

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摘要

The basis for control optimization is a nonlinear modeling for a drum-type boiler consisting of fur-nace, economizer, evaporator, superheaters, attemperator, turbine bypass and thick-walled components such as boiler drum and superheater header. After the mathematical formulation of the boiler start-up optimization problem and of the cost function, including the related hard constraints for inputs and states, the optimal reference and input control are calculated using a multi-stage control vector parameterization method and SQP techniques. The results of this optimization process are optimal reference values and the corresponding input trajectories. The control structures applied minimize both the fuel consumption and start-up time of the boiler.
机译:控制优化的基础是鼓式锅炉的非线性建模,该鼓式锅炉由炉膛,省煤器,蒸发器,过热器,调温器,涡轮旁通以及厚壁组件(例如锅炉鼓和过热器集管)组成。在对锅炉启动优化问题和成本函数(包括输入和状态的相关硬约束)进行数学表述之后,使用多阶段控制矢量参数化方法和SQP技术计算出最佳参考和输入控制。该优化过程的结果是最佳参考值和相应的输入轨迹。所采用的控制结构使燃油消耗和锅炉启动时间均减至最小。

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