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Application of H驴 Control in Rudder/Flap Vector Robust Control for Ship Course

机译:HAVI控制在船舶航向舵/襟翼矢量鲁棒控制中的应用

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For the parameter uncertainty and the disturbance randomicity that exist in ship course motion, the robust controller of ship course is designed on the base of rudder/flap vector control. The system uncertainty is analyzed, and the choice of weighting functions is discussed chiefly. For the sea wave operating on the ship, its energy-concentrating frequency varies as the encountering angle. For different encountering angles, we design the different weighting functions. For the pole of nominal model existing in imaginary axis, we use the bilinear-transform method to handle it. The method of "2-Riccati" equations is adopted to solve the H驴 controller. The system simulation is given, and the result shows that, compared with the PID controller, this system has a higher course precision, better robust performance. And the research has engineering application value.
机译:对于船舶课程运动中存在的参数不确定性和扰动随机性,船舶课程的强大控制器设计在舵/襟翼矢量控制的基础上。分析了系统不确定性,主要讨论了加权函数的选择。对于在船上操作的海波,其能量集中频率随着遇到角度而变化。对于不同的遇到角度,我们设计不同的加权函数。对于在虚构轴上存在的标称模型的极点,我们使用Bilinear-Transform方法来处理它。采用“2-Riccati”方程的方法来解决H∞控制器。给出了系统仿真,结果表明,与PID控制器相比,该系统具有更高的课程精度,更强的性能。该研究具有工程应用价值。

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