针对由彼此落点接近的一条基于模块化多电平换流器型高压直流输电(modular multilevel converter based HVDC,MMC-HVDC)线路和一条电网换相换流器型高压直流输电(line commutated converter based high voltage direct current,LCC-HVDC...针对由彼此落点接近的一条基于模块化多电平换流器型高压直流输电(modular multilevel converter based HVDC,MMC-HVDC)线路和一条电网换相换流器型高压直流输电(line commutated converter based high voltage direct current,LCC-HVDC)线路所构成的混合双馈入直流输电系统,基于多变量反馈控制理论建立可定量分析和评估MMC-HVDC与LCC-HVDC控制系统之间交互影响的等效独立控制通道。在此基础之上,定量分析评估LCC定关断角控制器、锁相环以及MMC锁相环、外环控制器、环流抑制器对MMC-HVDC与LCC-HVDC控制系统交互作用及小干扰稳定性的影响。最后,在PSCAD/EMTDC上搭建混合双馈入直流输电系统的电磁暂态详细仿真模型,仿真验证理论分析结果的有效性。展开更多
This paper introduces the finding of some chaotic attractors in a kind of n-dimensional autonomous hybrid system, which is realized via applying some discontinuous state feedback to a kind of n linear differential sys...This paper introduces the finding of some chaotic attractors in a kind of n-dimensional autonomous hybrid system, which is realized via applying some discontinuous state feedback to a kind of n linear differential system. And a constructive theorem is proposed for generalized synchronization related to the above chaotic hybrid systems. Examples are presented for illustrating the methods.展开更多
Aiming at a class of systems under parameter perturbations and unknown external disturbances, a method of fuzzy robust sliding mode control was proposed. Firstly, an integral sliding mode surface containing state feed...Aiming at a class of systems under parameter perturbations and unknown external disturbances, a method of fuzzy robust sliding mode control was proposed. Firstly, an integral sliding mode surface containing state feedback item was designed based on robust H∞ control theory. The robust state feedback control was utilized to substitute for the equivalent control of the traditional sliding mode control. Thus the robustness of systems sliding mode motion was improved even the initial states were unknown. Furthermore, when the upper bound of disturbance was unknown, the switching control logic was difficult to design, and the drawbacks of chattering in sliding mode control should also be considered simultaneously. To solve the above-mentioned problems, the fuzzy nonlinear method was applied to approximate the switching control term. Based on the Lyapunov stability theory, the parameter adaptive law which could guarantee the system stability was devised. The proposed control strategy could reduce the system chattering effectively. And the control input would not switch sharply, which improved the practicality of the sliding mode controller. Finally, simulation was conducted on system with parameter perturbations and unknown external disturbances. The result shows that the proposed method could enhance the approaching motion performance effectively. The chattering phenomenon is weakened, and the system possesses stronger robustness against parameter perturbations and external disturbances.展开更多
文摘针对由彼此落点接近的一条基于模块化多电平换流器型高压直流输电(modular multilevel converter based HVDC,MMC-HVDC)线路和一条电网换相换流器型高压直流输电(line commutated converter based high voltage direct current,LCC-HVDC)线路所构成的混合双馈入直流输电系统,基于多变量反馈控制理论建立可定量分析和评估MMC-HVDC与LCC-HVDC控制系统之间交互影响的等效独立控制通道。在此基础之上,定量分析评估LCC定关断角控制器、锁相环以及MMC锁相环、外环控制器、环流抑制器对MMC-HVDC与LCC-HVDC控制系统交互作用及小干扰稳定性的影响。最后,在PSCAD/EMTDC上搭建混合双馈入直流输电系统的电磁暂态详细仿真模型,仿真验证理论分析结果的有效性。
基金The project supported by National Natural Science Foundation of China under Grant Nos. 60074034 and 70271068
文摘This paper introduces the finding of some chaotic attractors in a kind of n-dimensional autonomous hybrid system, which is realized via applying some discontinuous state feedback to a kind of n linear differential system. And a constructive theorem is proposed for generalized synchronization related to the above chaotic hybrid systems. Examples are presented for illustrating the methods.
基金Project(51476187)supported by the National Natural Science Foundation of China
文摘Aiming at a class of systems under parameter perturbations and unknown external disturbances, a method of fuzzy robust sliding mode control was proposed. Firstly, an integral sliding mode surface containing state feedback item was designed based on robust H∞ control theory. The robust state feedback control was utilized to substitute for the equivalent control of the traditional sliding mode control. Thus the robustness of systems sliding mode motion was improved even the initial states were unknown. Furthermore, when the upper bound of disturbance was unknown, the switching control logic was difficult to design, and the drawbacks of chattering in sliding mode control should also be considered simultaneously. To solve the above-mentioned problems, the fuzzy nonlinear method was applied to approximate the switching control term. Based on the Lyapunov stability theory, the parameter adaptive law which could guarantee the system stability was devised. The proposed control strategy could reduce the system chattering effectively. And the control input would not switch sharply, which improved the practicality of the sliding mode controller. Finally, simulation was conducted on system with parameter perturbations and unknown external disturbances. The result shows that the proposed method could enhance the approaching motion performance effectively. The chattering phenomenon is weakened, and the system possesses stronger robustness against parameter perturbations and external disturbances.