Aiming at obtaining high power density of surface-mounted and interior permanent magnet synchronous motor(SIPMSM),it is important to accurately calculate the temperature field distribution of SIPMSM,and a magnetic-the...Aiming at obtaining high power density of surface-mounted and interior permanent magnet synchronous motor(SIPMSM),it is important to accurately calculate the temperature field distribution of SIPMSM,and a magnetic-thermal coupling method is proposed.The magnetic-thermal coupling mechanism is analyzed.The thermal network model and finite element model are built by this method,respectively.The effects of power frequency on iron losses and temperature fields are analyzed by the magnetic-thermal coupling finite element model under the condition of rated load,and the relationship between the load and temperature field is researched under the condition of the synchronous speed.In addition,the equivalent thermal network model is used to verify the magnetic-thermal coupling method.Then the temperatures of various nodes are obtained.The results show that there are advantages in both computational efficiency and accuracy for the proposed coupling method,which can be applied to other permanent magnet motors with complex structures.展开更多
分段并联供电的长定子直线电机在进行定子段供电切换时,电机参数发生改变,在高速运行期间会出现电流超调或断相情况,动子过分段时电机推力波动大。该文仿真分析几种动子过分段供电切换方法的特点,提出一种分段并联供电长定子直线电机定...分段并联供电的长定子直线电机在进行定子段供电切换时,电机参数发生改变,在高速运行期间会出现电流超调或断相情况,动子过分段时电机推力波动大。该文仿真分析几种动子过分段供电切换方法的特点,提出一种分段并联供电长定子直线电机定子段供电切换方法,在电路拓扑中仅需要将同一变流器交替供电的定子段中性点相连接,切换开关采用双向晶闸管,切换策略为在定子段切换过程中各相电流依次过零开通和关断。该方法抑制了切换过程中变流器的电流断续或波动,减小了电机推力波动。通过采用比例–积分–谐振(proportional integral resonance,PIR)控制器,抑制电机电感不平衡带来的电流2倍频波动。以一台双三相永磁同步直线电机为例,进行仿真实验,并验证该方法的有效性。展开更多
基金This work was supported by Natural Science Foundation of China(Item number:51777060,U1361109)Natural Science Foundation of Henan province(Item number:162300410117)the he innovative research team plan of Henan Polytechnic University(Item number:T2015-2).
文摘Aiming at obtaining high power density of surface-mounted and interior permanent magnet synchronous motor(SIPMSM),it is important to accurately calculate the temperature field distribution of SIPMSM,and a magnetic-thermal coupling method is proposed.The magnetic-thermal coupling mechanism is analyzed.The thermal network model and finite element model are built by this method,respectively.The effects of power frequency on iron losses and temperature fields are analyzed by the magnetic-thermal coupling finite element model under the condition of rated load,and the relationship between the load and temperature field is researched under the condition of the synchronous speed.In addition,the equivalent thermal network model is used to verify the magnetic-thermal coupling method.Then the temperatures of various nodes are obtained.The results show that there are advantages in both computational efficiency and accuracy for the proposed coupling method,which can be applied to other permanent magnet motors with complex structures.
文摘分段并联供电的长定子直线电机在进行定子段供电切换时,电机参数发生改变,在高速运行期间会出现电流超调或断相情况,动子过分段时电机推力波动大。该文仿真分析几种动子过分段供电切换方法的特点,提出一种分段并联供电长定子直线电机定子段供电切换方法,在电路拓扑中仅需要将同一变流器交替供电的定子段中性点相连接,切换开关采用双向晶闸管,切换策略为在定子段切换过程中各相电流依次过零开通和关断。该方法抑制了切换过程中变流器的电流断续或波动,减小了电机推力波动。通过采用比例–积分–谐振(proportional integral resonance,PIR)控制器,抑制电机电感不平衡带来的电流2倍频波动。以一台双三相永磁同步直线电机为例,进行仿真实验,并验证该方法的有效性。