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Main steam temperature control based on cascade correction and state feedback

机译:基于级联校正和状态反馈的主蒸汽温度控制

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摘要

According to the outlet temperature characteristics of supercritical boiler super-heater, a design method coordinated cascade correction and state feedback was proposed. Which solved the problems occurred during the state feedback controller design, such as the high-order system, zero-placement, stable state design and complicated computation, as well as decreased the overshoot and steady state error. State observation matrix, state feedback matrix, cascade controller and zero corrector were designed for the main steam temperature process. The simulation results showed that the cascade correction and state feedback coordinated system had no overshoot and the adjusting time was shorter and better robust compared with the PID control system, as well as with the better disturbance decrease compared with the single state feedback system, and feasibility for engineering compared with other intelligent optimization control strategies.
机译:根据超临界锅炉过热器出口温度特性,提出了一种协调级联校正和状态反馈的设计方法。解决了状态反馈控制器设计过程中出现的高阶系统,零位,稳态设计,计算复杂等问题,减少了过冲和稳态误差。针对主要蒸汽温度过程设计了状态观测矩阵,状态反馈矩阵,级联控制器和零校正器。仿真结果表明,与PID控制系统相比,级联校正和状态反馈协调系统无超调,调节时间短,鲁棒性好,与单状态反馈系统相比,扰动减小更好。与其他智能优化控制策略相比,更适合工程设计。

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