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1)  backstepping method
逆推方法
1.
The controller based on backstepping method and L2 performance norm for the TCSC in multi-machine system is presented.
利用逆推方法与L2性能准则相结合,设计了多机系统TCSC非线性鲁棒控制器,该控制器可以抑止干扰对系统输出的影响。
2.
A synchronization method for chaotic systems based on the dynamic surface control and backstepping method is proposed.
提出了一种基于动态面逆推设计的混沌同步方法,在每一步逆推设计算法中的虚拟控制器结合使用了一阶低通滤波器,从而避免了对一些非线性项的重复求导,使得所设计的控制器克服了直接逆推方法的复杂性激增的缺点。
2)  adaptive backstepping method
自适应逆推方法
1.
For a single-machine infinite-bus system,a nonlinear robust integrated controller and a parameter-update law are obtained based on adaptive backstepping methods and.
针对单机无穷大励磁与汽门系统,运用自适应逆推方法和系统的Lyapunov函数,获得了发电机的非线性综合控制器和参数替换律,文中给出了该控制器的具体设计步骤。
2.
A TCSC stability controller is designed based on adaptive backstepping method.
针对可控串联补偿器TCSC(ThyristorControlledSeriesCompensator)的动态过程和发电机阻尼系数不能精确测量的情况,将含有TCSC的单机无穷大系统用一个三阶微分方程表示,用自适应逆推方法设计了TCSC稳定控制器。
3)  adaptive backstepping
自适应逆推方法
1.
In view of internal and external disturbances to turbine speed governor system , storage functions of the control system are constructed based on adaptive backstepping method, then a nonlinear L2 gain disturbance attenuation controller and parameter updating law are obtained simultaneously.
针对带有内部及外部扰动的汽轮机调速系统,使用自适应逆推方法构造出调速系统的存贮函数,进而同时获得非线性L2增益干扰抑制控制器及参数替换律。
2.
For the turbine speed governor system with parameter uncertainties, the nonlinear steam valve robust controller is designed using adaptive backstepping and Lyapunov methods.
针对含有参数不确定性的汽轮机调速系统,使用自适应逆推方法及Lyapunov方法设计了非线性鲁棒汽门控制器,基于该方法的设计,设计过程系统、简明,且不必对原系统进行线性化,通过对单机无穷大系统的仿真表明了该控制器的有效性。
3.
For a single machine infinite-bus system with STATCOM affected by internal and external disturbances, the storage functions of this system were constructed based on adaptive backstepping method.
针对受内部及外部扰动影响的含STATCOM(StaticSynchronousCompensator)的单机无穷大系统 ,使用自适应逆推方法构造出系统的存贮函数 ,进而同时获得非线性L2 增益干扰抑制控制器及参数替换律·该控制器不仅能够抑制干扰对系统输出的影响 ,而且由于在内部扰动中重点考虑了阻尼系数的不确定性 ,因此该控制器对系统参数变化也具有很强的鲁棒性·同时 ,该方法的设计过程系统、简明 ,易为工程人员所接受·仿真结果表明自适应逆推方法设计的控制器拥有更优越的性
4)  backstepping algorithm
逆推算法
1.
A simplified nonlinear robust control algorithm was presented so as to improve the robustness of the designed controller for a nonlinear course-keeping system for ships through simplifying backstepping algorithm,which connected the backstepping algorithm with the closed-loop gain shaping algorithm.
为提高控制器的鲁棒性能,针对非线性船舶航向保持系统,将简化的逆推算法与闭环增益成形算法相结合,设计出非线性鲁棒控制器。
2.
For Norrbin ship mathematical model with nonlinear and uncertain characteristics,the ship steering robust controller was designed successfully based on backstepping algorithm and nonlinear damping algorithm.
针对带有不确定项的Norrbin非线性船舶模型,将逆推算法和非线性阻尼算法相结合,设计非线性船舶航向鲁棒控制器。
5)  reverse recursion
逆递推法
6)  Backward recurrence algorithm
逆推法
1.
In addition, the backward recurrence algorithm given can be extended to the one of complex orders.
此外,所给出的逆推法可推广到复阶数的情形。
补充资料:逆推
1.由下向上﹑由后向前推测。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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