Instead of avoiding occurrence of chaos in motor drives, chaos is positively utilized in this paper. A new chaotic pulse width modulation (PWM) scheme is proposed and implemented for AC motors, which functions to si...Instead of avoiding occurrence of chaos in motor drives, chaos is positively utilized in this paper. A new chaotic pulse width modulation (PWM) scheme is proposed and implemented for AC motors, which functions to significantly suppress harmonic peaks and hence acoustic noise. The key is to employ the Chua's circuit for generating a desired chaotic sequence. By using a practical induction motor, computer simulation and experimental results verify that the chaotic PWM has advantages of harmonic peak suppression and simple hardware implementation over the conventional PWM and random PWM.展开更多
在五相永磁同步电机(permanent magnet synchronous motor,PMSM)中,传统无差拍直接转矩和磁链控制(deadbeat direct torque and flux control,DB-DTFC)策略存在定子磁链和转矩耦合、计算量大以及电流谐波大等问题。基于此,提出一种基于...在五相永磁同步电机(permanent magnet synchronous motor,PMSM)中,传统无差拍直接转矩和磁链控制(deadbeat direct torque and flux control,DB-DTFC)策略存在定子磁链和转矩耦合、计算量大以及电流谐波大等问题。基于此,提出一种基于定子磁链定向的新型DB-DTFC策略。首先,在基于定子磁链定向坐标系上建立电压分量与定子磁链和转矩的关系,以实现定子磁链和转矩的解耦控制,进而提高转矩的动态性能。其次,将电流谐波抑制技术和载波脉宽调制技术相结合,以抑制3次谐波电流,进而降低定子磁链和转矩的脉动。最后,对传统和新型DB-DTFC策略进行实验比较分析。结果表明,该策略能降低定子磁链和转矩脉动、电流谐波和CPU计算量。展开更多
基金Project supported by the Shanghai Leading Academic Discipline Project (Grant No.T0103)
文摘Instead of avoiding occurrence of chaos in motor drives, chaos is positively utilized in this paper. A new chaotic pulse width modulation (PWM) scheme is proposed and implemented for AC motors, which functions to significantly suppress harmonic peaks and hence acoustic noise. The key is to employ the Chua's circuit for generating a desired chaotic sequence. By using a practical induction motor, computer simulation and experimental results verify that the chaotic PWM has advantages of harmonic peak suppression and simple hardware implementation over the conventional PWM and random PWM.
文摘在五相永磁同步电机(permanent magnet synchronous motor,PMSM)中,传统无差拍直接转矩和磁链控制(deadbeat direct torque and flux control,DB-DTFC)策略存在定子磁链和转矩耦合、计算量大以及电流谐波大等问题。基于此,提出一种基于定子磁链定向的新型DB-DTFC策略。首先,在基于定子磁链定向坐标系上建立电压分量与定子磁链和转矩的关系,以实现定子磁链和转矩的解耦控制,进而提高转矩的动态性能。其次,将电流谐波抑制技术和载波脉宽调制技术相结合,以抑制3次谐波电流,进而降低定子磁链和转矩的脉动。最后,对传统和新型DB-DTFC策略进行实验比较分析。结果表明,该策略能降低定子磁链和转矩脉动、电流谐波和CPU计算量。