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Robust wide-range control of steam-electric power plants

机译:蒸汽发电厂的强大的大范围控制

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摘要

To facilitate daily cycling of large electric generating units that were originally designed for baseload operation, the control system has to be redesigned for plant manoeuvrability over the operating range. A methodology for synthesizing an integrated feedforward-feedback control (FF/FBC) strategy is proposed for wide-range robust control of commercial-scale steam-electric power plants. In the proposed methodology, the feedforward control policy is generated via nonlinear programming for simultaneous optimization of all control inputs under specified constraints. The feedback control law is synthesized following the H/sub /spl infin//-based structured singular value (/spl mu/) approach to achieve the specified stability and performance robustness. The major features of the integrated FF/FBC system are: 1) optimized performance over a wide operating range resulting from the feedforward element; and 2) guaranteed stability and performance robustness resulting from the feedback element. To exemplify this control methodology, a family of FFC policies has been synthesized based on a nonlinear state-space model of a 525 MWe fossil-fueled power plant. The results of simulation experiments are shown.
机译:为了方便最初设计用于基本负荷运行的大型发电机组的日常循环,必须对控制系统进行重新设计,以在整个运行范围内实现工厂的可操作性。提出了一种综合集成的前馈-反馈控制(FF / FBC)策略的方法,用于工业规模蒸汽发电厂的广泛鲁棒控制。在提出的方法中,前馈控制策略是通过非线性编程生成的,用于在指定约束下同时优化所有控制输入。遵循基于H / sub / spl infin //的结构化奇异值(/ spl mu /)方法来合成反馈控制律,以实现指定的稳定性和性能鲁棒性。集成式FF / FBC系统的主要特点是:1)前馈元件可在宽工作范围内实现最佳性能; 2)保证了反馈元件的稳定性和性能鲁棒性。为了举例说明这种控制方法,已经基于525 MWe化石燃料发电厂的非线性状态空间模型合成了一系列FFC策略。显示了模拟实验的结果。

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