电机与控制学报
電機與控製學報
전궤여공제학보
ECTRIC MACHINES AND CONTROL
2015年
5期
105-111
,共7页
于家斌%王小艺%许继平%秦晓飞%郑军
于傢斌%王小藝%許繼平%秦曉飛%鄭軍
우가빈%왕소예%허계평%진효비%정군
永磁同步电主轴%弱磁控制%SVPWM过调制%6次谐波%陷波滤波器
永磁同步電主軸%弱磁控製%SVPWM過調製%6次諧波%陷波濾波器
영자동보전주축%약자공제%SVPWM과조제%6차해파%함파려파기
permanent magnet synchronous spindle%flux weakening control%SVPWM over modulation%sixth harmonic%notch filter
针对永磁同步电主轴在弱磁阶段,当采用SVPWM过调制控制时稳态速度产生波动的现象,在分析超前角弱磁控制算法的基础上,将主要原因归结为SVPWM过调制引起逆变器输出电压的6次谐波分量通过弱磁电压闭环传导到dq轴参考电流中,造成电流环控制性能变差进而影响电主轴的速度控制性能。对此,提出一种采用陷波滤波器的超前角弱磁控制算法。此方法在弱磁电压闭环回路中设计了陷波滤波器,以滤除输入电压信号中的6次谐波分量,同时不影响其他信号分量。实验结果表明,加入陷波滤波器之后,弱磁阶段的输出电压、电流与速度信号中的6次谐波分量明显地减小,其波形得到了显著改善,从而有效地提高了电主轴的弱磁调速性能。
針對永磁同步電主軸在弱磁階段,噹採用SVPWM過調製控製時穩態速度產生波動的現象,在分析超前角弱磁控製算法的基礎上,將主要原因歸結為SVPWM過調製引起逆變器輸齣電壓的6次諧波分量通過弱磁電壓閉環傳導到dq軸參攷電流中,造成電流環控製性能變差進而影響電主軸的速度控製性能。對此,提齣一種採用陷波濾波器的超前角弱磁控製算法。此方法在弱磁電壓閉環迴路中設計瞭陷波濾波器,以濾除輸入電壓信號中的6次諧波分量,同時不影響其他信號分量。實驗結果錶明,加入陷波濾波器之後,弱磁階段的輸齣電壓、電流與速度信號中的6次諧波分量明顯地減小,其波形得到瞭顯著改善,從而有效地提高瞭電主軸的弱磁調速性能。
침대영자동보전주축재약자계단,당채용SVPWM과조제공제시은태속도산생파동적현상,재분석초전각약자공제산법적기출상,장주요원인귀결위SVPWM과조제인기역변기수출전압적6차해파분량통과약자전압폐배전도도dq축삼고전류중,조성전류배공제성능변차진이영향전주축적속도공제성능。대차,제출일충채용함파려파기적초전각약자공제산법。차방법재약자전압폐배회로중설계료함파려파기,이려제수입전압신호중적6차해파분량,동시불영향기타신호분량。실험결과표명,가입함파려파기지후,약자계단적수출전압、전류여속도신호중적6차해파분량명현지감소,기파형득도료현저개선,종이유효지제고료전주축적약자조속성능。
As permanent magnet synchronous spindle ( PMSS ) runs in the flux weakening region, the SVPWM over modulation control will cause the fluctuation of steady-state speed. By analyzing the princi-ple of the leading angle flux weakening control algorithm, the main reason is that the SVPWM over modu-lation causes the sixth harmonic of inverter output voltage and it transmits to the dq reference currents though the flux weakening voltage close-loop, as a result the current and speed control performance of PMSS is deteriorated. In order to solve this problem, a notch filter leading angle flux weakening control algorithm was proposed. A notch filter was designed to filter the sixth harmonic component of the input voltage signal in the voltage close-loop, and the other signal components were not affected. The experi-ment results show that the notch filter can significantly reduce the sixth harmonic component of the input voltage, current and speed signal in the flux weakening region, and their waveforms are remarkably im-proved. The flux weakening speed control performance is effectively enhanced.