This paper presents a method to design a control scheme for nonlinear systems using fuzzy optimal control.In the design process,the nonlinear system is first converted into local subsystems using sector non linearity ...This paper presents a method to design a control scheme for nonlinear systems using fuzzy optimal control.In the design process,the nonlinear system is first converted into local subsystems using sector non linearity approach of Takagi Sugeno(T S)fuzzy modeling.For each local subsystem,an optimal control is designed.Then,the parameters of local controllers are defuzzified to construct a global optimal controller.To prove the effectiveness of this control scheme,simulations are performed using the mathematical model of Esso Osaka tanker ship for set point regulation with and without disturbance and reference tracking.In addition,the simulation results are compared with that of a PID controller for further verification and validation.It has been shown that the proposed optimal controller can be used for the nonlinear ship steering with good rise time,zero steady state error and fast settling time.展开更多
船舶航向操舵控制是个典型的非线性系统,而工程上经常使用的常规PID(Proportional Integral Differential)控制器则为线性控制,至于模糊控制虽为非线性控制,但稳态精度不高。将常规PID控制与模糊控制相结合,基于Norrbin非线性系统模型...船舶航向操舵控制是个典型的非线性系统,而工程上经常使用的常规PID(Proportional Integral Differential)控制器则为线性控制,至于模糊控制虽为非线性控制,但稳态精度不高。将常规PID控制与模糊控制相结合,基于Norrbin非线性系统模型和模糊自整定PID控制器的设计步骤,提出一种新的船舶航向控制算法,即船舶航向模糊自整定操舵控制器,并针对5 446标准箱的集装箱船舶,用Matlab进行了仿真计算。仿真结果表明,该控制算法可以使船舶航向控制从动态和稳态上都具有较好的精度,跟踪响应迅速,超调量小。展开更多
基金supported in part by the National Natural Science Foundation of China (No. 61751210)the Jiangsu Natural Science Foundation of China (No. BK20171417)the Fundamental Research Funds for the Central Universities(No. NG2019002)
文摘This paper presents a method to design a control scheme for nonlinear systems using fuzzy optimal control.In the design process,the nonlinear system is first converted into local subsystems using sector non linearity approach of Takagi Sugeno(T S)fuzzy modeling.For each local subsystem,an optimal control is designed.Then,the parameters of local controllers are defuzzified to construct a global optimal controller.To prove the effectiveness of this control scheme,simulations are performed using the mathematical model of Esso Osaka tanker ship for set point regulation with and without disturbance and reference tracking.In addition,the simulation results are compared with that of a PID controller for further verification and validation.It has been shown that the proposed optimal controller can be used for the nonlinear ship steering with good rise time,zero steady state error and fast settling time.
文摘船舶航向操舵控制是个典型的非线性系统,而工程上经常使用的常规PID(Proportional Integral Differential)控制器则为线性控制,至于模糊控制虽为非线性控制,但稳态精度不高。将常规PID控制与模糊控制相结合,基于Norrbin非线性系统模型和模糊自整定PID控制器的设计步骤,提出一种新的船舶航向控制算法,即船舶航向模糊自整定操舵控制器,并针对5 446标准箱的集装箱船舶,用Matlab进行了仿真计算。仿真结果表明,该控制算法可以使船舶航向控制从动态和稳态上都具有较好的精度,跟踪响应迅速,超调量小。