The dynamic transmission characteristics and the sensitivities of the three stage idler gear system of the new NC power turret are studied in the paper. Considering the strongly nonlinear factors such as the periodica...The dynamic transmission characteristics and the sensitivities of the three stage idler gear system of the new NC power turret are studied in the paper. Considering the strongly nonlinear factors such as the periodically time-varying mesh stiffness, the nonlinear tooth backlash, the lump-parameter model of the gear system is developed with one rotational and two translational freedoms of each gear. The eigen-values and eigenvectors are derived and analyzed on the basis of the real modal theory. The sensitivities of natural frequencies to design parameters including supporting and meshing stiffnesses, gear masses, and moments of inertia by the direct differential method are also calculated. The results show the quantitative and qualitative impact of the parameters to the natural characteristics of the gear system. Furthermore, the periodic steady state solutions are obtained by the numerical approach based on the nonlinear model. These results are employed to gain insights into the primary controlling parameters, to forecast the severity of the dynamic response, and to assess the acceptability of the gear design.展开更多
为实现统一电能质量控制器(Unified Power Quality Conditioner,UPQC)容量在串并联单元之间的合理分配,提高UPQC补偿效率,给出了一种UPQC容量优化设计及控制方法。利用矢量图方法分析了UPQC稳态运行特性,建立了UPQC容量与电源电压暂降/...为实现统一电能质量控制器(Unified Power Quality Conditioner,UPQC)容量在串并联单元之间的合理分配,提高UPQC补偿效率,给出了一种UPQC容量优化设计及控制方法。利用矢量图方法分析了UPQC稳态运行特性,建立了UPQC容量与电源电压暂降/骤升幅度、负载容量、负载功率因数和负载电压变化相角之间的关系模型,将其作为UPQC串并联单元容量选择的依据。根据补偿后负载电压相角可控的特点,采用神经网络对负载电压相角进行优化估计,降低UPQC实时补偿功率。仿真结果证明,所提方法能有效减小UPQC设计容量,优化动态补偿效果。展开更多
文摘The dynamic transmission characteristics and the sensitivities of the three stage idler gear system of the new NC power turret are studied in the paper. Considering the strongly nonlinear factors such as the periodically time-varying mesh stiffness, the nonlinear tooth backlash, the lump-parameter model of the gear system is developed with one rotational and two translational freedoms of each gear. The eigen-values and eigenvectors are derived and analyzed on the basis of the real modal theory. The sensitivities of natural frequencies to design parameters including supporting and meshing stiffnesses, gear masses, and moments of inertia by the direct differential method are also calculated. The results show the quantitative and qualitative impact of the parameters to the natural characteristics of the gear system. Furthermore, the periodic steady state solutions are obtained by the numerical approach based on the nonlinear model. These results are employed to gain insights into the primary controlling parameters, to forecast the severity of the dynamic response, and to assess the acceptability of the gear design.
文摘为实现统一电能质量控制器(Unified Power Quality Conditioner,UPQC)容量在串并联单元之间的合理分配,提高UPQC补偿效率,给出了一种UPQC容量优化设计及控制方法。利用矢量图方法分析了UPQC稳态运行特性,建立了UPQC容量与电源电压暂降/骤升幅度、负载容量、负载功率因数和负载电压变化相角之间的关系模型,将其作为UPQC串并联单元容量选择的依据。根据补偿后负载电压相角可控的特点,采用神经网络对负载电压相角进行优化估计,降低UPQC实时补偿功率。仿真结果证明,所提方法能有效减小UPQC设计容量,优化动态补偿效果。