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Modeling and sliding mode predictive control of the ultra-supercritical boiler-turbine system with uncertainties and input constraints

机译:超超临界锅炉 - 汽轮机系统的建模与滑模预测控制,具有不确定性和输入约束

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摘要

The coordinated control system (CCS) serves as an important role in load regulation, efficiency optimization and pollutant reduction for coal-fired power plants. The CCS faces with tough challenges, such as the wide-range load variation, various uncertainties and constraints. This paper aims to improve the load tacking ability and robustness for boiler-turbine units under wide-range operation. To capture the key dynamics of the ultra-supercritical boiler-turbine system, a nonlinear control-oriented model is developed based on mechanism analysis and model reduction techniques, which is validated with the history operation data of a real 1000 MW unit. To simultaneously address the issues of uncertainties and input constraints, a discrete-time sliding mode predictive controller (SMPC) is designed with the dual-mode control law. Moreover, the input-to-state stability and robustness of the closed-loop system are proved. Simulation results are presented to illustrate the effectiveness of the proposed control scheme, which achieves good tracking performance, disturbance rejection ability and compatibility to input constraints. (C) 2018 ISA. Published by Elsevier Ltd. All rights reserved.
机译:协调控制系统(CCS)是燃煤发电厂的负载调节,效率优化和污染物减少中的重要作用。 CCS面临着艰难的挑战,例如广泛的负荷变化,各种不确定性和约束。本文旨在在广泛运行下改善锅炉 - 汽轮机单元的负荷粘接能力和鲁棒性。为了捕获超超临界锅炉 - 涡轮机系统的关键动态,基于机制分析和模型减少技术开发了非线性控制导向模型,其验证了真正1000 MW单元的历史操作数据。为了同时解决不确定性和输入限制的问题,采用双模控制法设计了一个离散时间滑模预测控制器(SMPC)。此外,证明了闭环系统的输入到状态稳定性和鲁棒性。提出了仿真结果以说明所提出的控制方案的有效性,这实现了良好的跟踪性能,扰动抑制能力和与输入约束的兼容性。 (c)2018 ISA。 elsevier有限公司出版。保留所有权利。

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