A linear matrix inequality (LMI)-based sliding surface design method for integral sliding mode control of uncertain time- delay systems with mismatching uncertainties is proposed. The uncertain time-delay system und...A linear matrix inequality (LMI)-based sliding surface design method for integral sliding mode control of uncertain time- delay systems with mismatching uncertainties is proposed. The uncertain time-delay system under consideration may have mis- matching norm bounded uncertainties in the state matrix as well as the input matrix, A sufficient condition for the existence of a sliding surface is given to guarantee asymptotic stability of the full order slJdJng mode dynamics. An LMI characterization of the slid- ing surface is given, together with an integral sliding mode control law guaranteeing the existence of a sliding mode from the initial time. Finally, a simulation is given to show the effectiveness of the proposed method.展开更多
The paper presents finite element modeling of crack tip blunting for numerical estimation of fracture parameter of a Mode I crack, in weak alloy steel, which is near and normal to the interface of elastically identica...The paper presents finite element modeling of crack tip blunting for numerical estimation of fracture parameter of a Mode I crack, in weak alloy steel, which is near and normal to the interface of elastically identical but stronger maraging steel. The bimetallic body is subjected to monotonic load in K dominated regime. Crack tip yield zone across the interface, treated as Dugdale’s cohesive zone, is isolated from the bimetallic domain and is modeled alone under the action of respective cohesive stress over yield zones for obtaining the contribution of mismatch between yield strength of the steels in crack energy release rate component, Jinterface. Effect of far field load on Jinterface is found separately from a theoretical model. Numerical and theoretical results of Jinterface are in good agreement.展开更多
In order to solve the mismatched uncertainties of a class of nonlinearsystems, a control method of sliding mode control (SMC) based on the backstepping design isproposed. It introduces SMC in to the last step of backs...In order to solve the mismatched uncertainties of a class of nonlinearsystems, a control method of sliding mode control (SMC) based on the backstepping design isproposed. It introduces SMC in to the last step of backstepping design to modify the backsteppingalgorithm. This combination not only enables the generalization of the backstepping design to beapplied to more general nonlinear systems, but also makes the SMC method become effective in solvingthe mismatched uncertainties. The SMC based on the backstepping design is applied to the flightcontrol system design of an aerodynamic missile. The control system is researched throughsimulation. The simulation results show the effectiveness of the proposed control method.展开更多
This paper proposes a fast integral terminal sliding mode(ITSM) control method for a cascaded nonlinear dynamical system with mismatched uncertainties. Firstly, an integral terminal sliding mode surface is presented...This paper proposes a fast integral terminal sliding mode(ITSM) control method for a cascaded nonlinear dynamical system with mismatched uncertainties. Firstly, an integral terminal sliding mode surface is presented, which not only avoids the singularity in the traditional terminal sliding mode, but also addresses the mismatched problems in the nonlinear control system. Secondly, a new ITSM controller with finite convergence time based on the backstepping technique is derived for a cascaded nonlinear dynamical system with mismatched uncertainties. Thirdly, the convergence time of ITSM is analyzed, whose convergence speed is faster than those of two nonsingular terminal sliding modes.Finally, simulation results are presented in order to evaluate the effectiveness of ITSM control strategies for mismatched uncertainties.展开更多
针对永磁同步电机(Permanent magnet synchronous motor,PMSM)模型预测电流控制(Model prediction current control,MPCC)中因模型参数失配造成的控制性能下降问题,提出一种基于内模控制(Internal model control,IMC)观测器的PMSM强鲁...针对永磁同步电机(Permanent magnet synchronous motor,PMSM)模型预测电流控制(Model prediction current control,MPCC)中因模型参数失配造成的控制性能下降问题,提出一种基于内模控制(Internal model control,IMC)观测器的PMSM强鲁棒双矢量MPCC。首先,在同步旋转坐标系下搭建PMSM双矢量MPCC模型,将系统参数扰动引入到电机电压方程。其次,根据状态反馈理论设计d、q轴电流IMC观测器来估计系统扰动。最后,将观测器估计系统扰动引入到含参数扰动项的电机电压方程中,为双矢量MPCC算法提供实时补偿,实现对电流环的无稳态误差控制。仿真结果表明,所提出的设计方法避免了参数失配导致的电流静差及振荡问题,减小了转速稳态误差及转矩脉动,可以使PMSM控制系统在参数失配时稳定运行,提高了系统的鲁棒性能。展开更多
圆筒型永磁直线电机(tubular permanent magnet linear motor,TPMLM)具有推力密度大、效率高等优点。不匹配干扰易引起电机速度波动、超调等问题,恶化了TPMLM的系统性能。为解决该问题,该文提出一种基于不匹配干扰观测器的新型滑模控...圆筒型永磁直线电机(tubular permanent magnet linear motor,TPMLM)具有推力密度大、效率高等优点。不匹配干扰易引起电机速度波动、超调等问题,恶化了TPMLM的系统性能。为解决该问题,该文提出一种基于不匹配干扰观测器的新型滑模控制策略。该策略在滑模面中引入扰动观测器,采用该扰动观测器观测不匹配扰动,确保TPMLM系统对不匹配干扰和匹配干扰具有鲁棒性;将反馈q轴电流融入速度控制器中,实现电机速度和电流的双重控制,能使电机速度快速跟随且无超调,提高该类电机系统的动态性能和稳态性能。仿真和实验结果验证了所提控制策略的可行性。展开更多
基金supported in part by the National Basic Research Program of China(973 Program)(61334)
文摘A linear matrix inequality (LMI)-based sliding surface design method for integral sliding mode control of uncertain time- delay systems with mismatching uncertainties is proposed. The uncertain time-delay system under consideration may have mis- matching norm bounded uncertainties in the state matrix as well as the input matrix, A sufficient condition for the existence of a sliding surface is given to guarantee asymptotic stability of the full order slJdJng mode dynamics. An LMI characterization of the slid- ing surface is given, together with an integral sliding mode control law guaranteeing the existence of a sliding mode from the initial time. Finally, a simulation is given to show the effectiveness of the proposed method.
文摘The paper presents finite element modeling of crack tip blunting for numerical estimation of fracture parameter of a Mode I crack, in weak alloy steel, which is near and normal to the interface of elastically identical but stronger maraging steel. The bimetallic body is subjected to monotonic load in K dominated regime. Crack tip yield zone across the interface, treated as Dugdale’s cohesive zone, is isolated from the bimetallic domain and is modeled alone under the action of respective cohesive stress over yield zones for obtaining the contribution of mismatch between yield strength of the steels in crack energy release rate component, Jinterface. Effect of far field load on Jinterface is found separately from a theoretical model. Numerical and theoretical results of Jinterface are in good agreement.
文摘In order to solve the mismatched uncertainties of a class of nonlinearsystems, a control method of sliding mode control (SMC) based on the backstepping design isproposed. It introduces SMC in to the last step of backstepping design to modify the backsteppingalgorithm. This combination not only enables the generalization of the backstepping design to beapplied to more general nonlinear systems, but also makes the SMC method become effective in solvingthe mismatched uncertainties. The SMC based on the backstepping design is applied to the flightcontrol system design of an aerodynamic missile. The control system is researched throughsimulation. The simulation results show the effectiveness of the proposed control method.
基金supported by the National Natural Science Foundation of China(61473226)
文摘This paper proposes a fast integral terminal sliding mode(ITSM) control method for a cascaded nonlinear dynamical system with mismatched uncertainties. Firstly, an integral terminal sliding mode surface is presented, which not only avoids the singularity in the traditional terminal sliding mode, but also addresses the mismatched problems in the nonlinear control system. Secondly, a new ITSM controller with finite convergence time based on the backstepping technique is derived for a cascaded nonlinear dynamical system with mismatched uncertainties. Thirdly, the convergence time of ITSM is analyzed, whose convergence speed is faster than those of two nonsingular terminal sliding modes.Finally, simulation results are presented in order to evaluate the effectiveness of ITSM control strategies for mismatched uncertainties.
基金This work was supported by the National Natural Science Foundation of China (51307076), and the Provincial Natural Science Foundation of Liaoning (201602350).
文摘针对永磁同步电机(Permanent magnet synchronous motor,PMSM)模型预测电流控制(Model prediction current control,MPCC)中因模型参数失配造成的控制性能下降问题,提出一种基于内模控制(Internal model control,IMC)观测器的PMSM强鲁棒双矢量MPCC。首先,在同步旋转坐标系下搭建PMSM双矢量MPCC模型,将系统参数扰动引入到电机电压方程。其次,根据状态反馈理论设计d、q轴电流IMC观测器来估计系统扰动。最后,将观测器估计系统扰动引入到含参数扰动项的电机电压方程中,为双矢量MPCC算法提供实时补偿,实现对电流环的无稳态误差控制。仿真结果表明,所提出的设计方法避免了参数失配导致的电流静差及振荡问题,减小了转速稳态误差及转矩脉动,可以使PMSM控制系统在参数失配时稳定运行,提高了系统的鲁棒性能。
文摘圆筒型永磁直线电机(tubular permanent magnet linear motor,TPMLM)具有推力密度大、效率高等优点。不匹配干扰易引起电机速度波动、超调等问题,恶化了TPMLM的系统性能。为解决该问题,该文提出一种基于不匹配干扰观测器的新型滑模控制策略。该策略在滑模面中引入扰动观测器,采用该扰动观测器观测不匹配扰动,确保TPMLM系统对不匹配干扰和匹配干扰具有鲁棒性;将反馈q轴电流融入速度控制器中,实现电机速度和电流的双重控制,能使电机速度快速跟随且无超调,提高该类电机系统的动态性能和稳态性能。仿真和实验结果验证了所提控制策略的可行性。