期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
基于多变量内模解耦的CFB锅炉燃烧控制研究 被引量:5
1
作者 钟亮民 刘吉臻 +1 位作者 张恒 王瑞琪 《动力工程学报》 CAS CSCD 北大核心 2014年第4期298-306,共9页
为提高CFB锅炉燃烧系统的自动控制品质,分析了系统主蒸汽压力和床温对象在调节过程中的相互作用,提出解耦的系统控制结构.通过选取上述强耦合对象,以一次风量和给煤量作为调节量,采用补偿的多变量内模解耦控制策略实现了该两输入两输出(... 为提高CFB锅炉燃烧系统的自动控制品质,分析了系统主蒸汽压力和床温对象在调节过程中的相互作用,提出解耦的系统控制结构.通过选取上述强耦合对象,以一次风量和给煤量作为调节量,采用补偿的多变量内模解耦控制策略实现了该两输入两输出(TITO)系统的解耦.给出了解耦控制器的详细设计过程,通过设计能够有效抵消缓慢极点或主导极点的滤波器以加快响应速度.在综合ISE指标的基础上发展了基于超调量和调节时间的参数整定指标.对所设计控制器进行次最优降阶,并验证输入、输出扰动性能和模型失配鲁棒性,仿真结果表明:所采用的解耦控制策略是有效的. 展开更多
关键词 多变量内模控制 循环流化床 滤波器 整定指标
下载PDF
Energy Optimization of the Fin/Rudder Roll Stabilization System Based on the Multi-objective Genetic Algorithm (MOGA) 被引量:3
2
作者 Lijun Yu Shaoying Liu Fanming Liu Hui Wang 《Journal of Marine Science and Application》 CSCD 2015年第2期202-207,共6页
Energy optimization is one of the key problems for ship roll reduction systems in the last decade. According to the nonlinear characteristics of ship motion, the four degrees of freedom nonlinear model of Fin/Rudder r... Energy optimization is one of the key problems for ship roll reduction systems in the last decade. According to the nonlinear characteristics of ship motion, the four degrees of freedom nonlinear model of Fin/Rudder roll stabilization can be established. This paper analyzes energy consumption caused by overcoming the resistance and the yaw, which is added to the fin/rudder roll stabilization system as new performance index. In order to achieve the purpose of the roll reduction, ship course keeping and energy optimization, the self-tuning PID controller based on the multi-objective genetic algorithm (MOGA) method is used to optimize performance index. In addition, random weight coefficient is adopted to build a multi-objective genetic algorithm optimization model. The objective function is improved so that the objective function can be normalized to a constant level. Simulation results showed that the control method based on MOGA, compared with the traditional control method, not only improves the efficiency of roll stabilization and yaw control precision, but also optimizes the energy of the system. The proposed methodology can get a better performance at different sea states. 展开更多
关键词 ship motion energy optimization ship roll reduction performance index self-tuning PID multi-objective geneticalgorithm (MOGA) roll stabilization fin/rudder roll stabilization yaw control precision
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部