摘要:牽引電機車變頻器廣泛采用PWM控{6I技術,由于它可同時實現變頻、變壓、反抑制諧波的特點,在將穩定的直流電變成一定頻率的交流電時,可根據電機車的實際需要,變化牽引電機的電壓頻率值,通過雙PWM變頻調速系統簡化硬件,實現電機車的調速控制,提高控制精度和系統的可靠性,且系統簡單,具有廣闊的應用前景。
關鍵詞:PWM控{6I;牽引變頻器;設計
[b][align=center]Design of the frequency converter in track driving
system based oi1 the PWM control
Liu Xin—hui.Cai Wei
(Lanzhoupolytechnic college,Lartzhou C.ansu 730050,China)[/align][/b]
Abstract:PWM control technology which was widely used in locomotive frequency converter can realize frequency conversion and voltage conversion to counter—restrain hgrmonious simultaneity.When it changes stable DC into the certain frequency AC.accordingtothe electriclocomotive actual need,to changethe driving voltagefrequency value ofthe electrical machinero Y,andtIIl the doublePWM frequency conversion velocity modulation system to simplify hardware,inthiswaywill realize the electric locomo tive velocity modulation controlI increase the control precision and the system reliability。The system will be simpleI and also has a extremely broad application prospect.
Key words:PWM control;driving frequency converter design
1 引 言
為適應煤炭、冶金、礦山等場所運輸牽引需要,我國自行設計了7T及7T以上多種類型牽引電機車,它們能在窄軌機車運行巷道中安全工作,其長度、寬度和轉彎半徑都滿足冶金礦山、煤礦等特殊工況的使用要求,其核心技術是基于PWM控制的變頻調速技術,與直流調速和其它交流調速相比,其變頻調速器的調速范圍、過載能力、調速精度、動態響應、功率因數、運行效率、維護要求等方面均有明顯優勢,同時該裝置無觸點,可調頻率,調電壓,簡化維護,甚至實現免維護。
2 牽引變頻器的分析與設計
利用牽引變頻器拖動電動機,起動電流小,能實現軟起動和無級調速,方便地進行加減速控制,使電動機獲得高性能,大幅度節約電能。
[b][align=center]詳細內容請點擊:
基于PWM 控制的軌道牽引系統變頻器設計[/align][/b]