The performance characteristics,particularly the starting performance of direct line-fed induction motors,which are mainly influenced by the design of the rotor,are crucial considerations for end-users.It is quite a c...The performance characteristics,particularly the starting performance of direct line-fed induction motors,which are mainly influenced by the design of the rotor,are crucial considerations for end-users.It is quite a challenging issue for motor manufacturers to enhance the starting performance of existing mass-produced motors with minimal modifications and expenses.In this paper,a simple and cost-effective method to improve the starting performance of a commercial squirrel-cage induction motor(SCIM)is proposed.The influence of geometric parameters of the end-ring on the performance characteristics,including starting(locked rotor)torque,pull-up and break down torque,starting current,rotor electric parameters,current density,power losses,and efficiency have been comprehensively investigated.It has been revealed that among the other end-ring design parameters,the ring thickness has a significant effect on the performance characteristics.An optimal end-ring thickness is determined,and its performance characteristics have been compared to those of its initial counterpart.Numeric and parametric analyses have been conducted using a 2D time-stepping finite element method(FEM).The FEM results were validated using experimental measurements obtained from an 11 kW SCIM prototype.展开更多
试制了1台8 k W电动汽车驱动非晶开关磁阻电机(SRM),并对其进行了静态性能测试。使用有限元方法对电机在低速大扭矩及高速小扭矩共计4种工况下的铁耗、铜耗、扭矩和效率等性能进行了仿真计算。结果表明,相对于硅钢,非晶合金的高磁导率...试制了1台8 k W电动汽车驱动非晶开关磁阻电机(SRM),并对其进行了静态性能测试。使用有限元方法对电机在低速大扭矩及高速小扭矩共计4种工况下的铁耗、铜耗、扭矩和效率等性能进行了仿真计算。结果表明,相对于硅钢,非晶合金的高磁导率特性可有效保持SRM在高频激励条件下的相电感值;非晶合金的低损耗特性可有效降低电机铁耗值,尤其在铁耗为电机主要损耗的高速小扭矩工况下,可显著提升电机效率(3%~9%)。然而,非晶合金的饱和磁密较低,非晶电机的磁链-电流曲线相对于硅钢电机会有区别,应在其工作磁密、结构尺寸及控制参数上进行调整和优化以获得最佳性能。展开更多
文摘The performance characteristics,particularly the starting performance of direct line-fed induction motors,which are mainly influenced by the design of the rotor,are crucial considerations for end-users.It is quite a challenging issue for motor manufacturers to enhance the starting performance of existing mass-produced motors with minimal modifications and expenses.In this paper,a simple and cost-effective method to improve the starting performance of a commercial squirrel-cage induction motor(SCIM)is proposed.The influence of geometric parameters of the end-ring on the performance characteristics,including starting(locked rotor)torque,pull-up and break down torque,starting current,rotor electric parameters,current density,power losses,and efficiency have been comprehensively investigated.It has been revealed that among the other end-ring design parameters,the ring thickness has a significant effect on the performance characteristics.An optimal end-ring thickness is determined,and its performance characteristics have been compared to those of its initial counterpart.Numeric and parametric analyses have been conducted using a 2D time-stepping finite element method(FEM).The FEM results were validated using experimental measurements obtained from an 11 kW SCIM prototype.
文摘试制了1台8 k W电动汽车驱动非晶开关磁阻电机(SRM),并对其进行了静态性能测试。使用有限元方法对电机在低速大扭矩及高速小扭矩共计4种工况下的铁耗、铜耗、扭矩和效率等性能进行了仿真计算。结果表明,相对于硅钢,非晶合金的高磁导率特性可有效保持SRM在高频激励条件下的相电感值;非晶合金的低损耗特性可有效降低电机铁耗值,尤其在铁耗为电机主要损耗的高速小扭矩工况下,可显著提升电机效率(3%~9%)。然而,非晶合金的饱和磁密较低,非晶电机的磁链-电流曲线相对于硅钢电机会有区别,应在其工作磁密、结构尺寸及控制参数上进行调整和优化以获得最佳性能。