最近在搞变频器,用的是28035,不知道这个模块的寄存器是干什么用的?
EPwm1Regs.PCCTL.bit.CHPDUTY = 6;
EPwm2Regs.PCCTL.bit.CHPDUTY = 6;
EPwm3Regs.PCCTL.bit.CHPDUTY = 6;
EPwm1Regs.PCCTL.bit.CHPFREQ = 7;
EPwm2Regs.PCCTL.bit.CHPFREQ = 7;
EPwm3Regs.PCCTL.bit.CHPFREQ = 7;
EPwm1Regs.PCCTL.bit.OSHTWTH = 15;
EPwm2Regs.PCCTL.bit.OSHTWTH = 15;
EPwm3Regs.PCCTL.bit.OSHTWTH = 15;
EPwm1Regs.PCCTL.bit.CHPEN = 1;
EPwm2Regs.PCCTL.bit.CHPEN = 1;
EPwm3Regs.PCCTL.bit.CHPEN = 1;
程序中是这样配置的,看输出DSP主控板的输出波形为每一道PWM波的高电平都被斩为七份(大概是)高低脉冲,但是经过驱动板上面的光耦隔离后,IGBT的门极PWM波变正常了,跟没有配置这个寄存器的PWM 是一样的(每一道PWM波的高电平一直为高,不再有被斩的效果)……
我们变频器遇到的问题是发热严重,载波频率为4K,2.2KW的,匹配型号的电机空载运行,变频器温升可达10~12℃,程序为上面的配置……
本以为不配置这个寄存器,温升会下降,我做如下修改:
EPwm1Regs.PCCTL.bit.CHPDUTY = 6;
EPwm2Regs.PCCTL.bit.CHPDUTY = 6;
EPwm3Regs.PCCTL.bit.CHPDUTY = 6;
EPwm1Regs.PCCTL.bit.CHPFREQ = 7;
EPwm2Regs.PCCTL.bit.CHPFREQ = 7;
EPwm3Regs.PCCTL.bit.CHPFREQ = 7;
EPwm1Regs.PCCTL.bit.OSHTWTH = 15;
EPwm2Regs.PCCTL.bit.OSHTWTH = 15;
EPwm3Regs.PCCTL.bit.OSHTWTH = 15;
EPwm1Regs.PCCTL.bit.CHPEN = 0;
EPwm2Regs.PCCTL.bit.CHPEN = 0;
EPwm3Regs.PCCTL.bit.CHPEN = 0;
没想到,修改后,温升又增加了2~3℃,这是为什么呢?对于修改前的程序,IGBT门极波形和DSP输出波形不同,又是为什么呢?

