单相桥式整流电路带反电动势负载,电感量L的公式的推导

2025-03-15 21:58:18
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回答1:

单相桥式全控整流电路,由4个可控硅组成桥式整流,能控制交流输入和直流输出。单相桥式半控整流电路,组成形式有多种。最常见的方式为2只可控硅,2只整流管,由可控硅控制交流输入端,直流输出不控制。还有一种简单控制电路,在普通桥式整流前加一只交流型固态继电器控制整流桥交流输入。相对于对交流输入和直流输出均能控制的全控制整流电路,只能控制交流输入端或直流输出端的整流电路称为半控整流电路。单相桥式全控整流电路用四个晶闸管,两只晶闸管接成共阴极,两只晶闸管接成共阳极,每一只晶闸管是一个桥臂。在u2正半波的(0~α)区间,晶闸管VT1、VT4承受正压,但无触发脉冲,处于关断状态。假设电路已工作在稳定状态,则在0~α区间由于电感释放能量,晶闸管VT2、VT3维持导通。在u2正半波的ωt=α时刻及以后,ωt=α处触发晶闸管VT1、VT4使其导通,电流沿a→VT1→L→R→VT4→b→Tr的二次绕组→a流通,此时负载上有输出电压(ud=u2)和电流。电源电压反向加到晶闸管VT2、VT3上,使其承受反压而处于关断状态。在u2负半波的(π~π+α)区间,当ωt=π时,电源电压自然过零,感应电势使晶闸管VT1、VT4继续导通。在电压负半波,晶闸管VT2、VT3承受正压,因无触发脉冲,VT2、VT3处于关断状态。在u2负半波的ωt=π+α时刻及以后,ωt=π+α处触发晶闸管VT2、VT3使其导通,电流沿b→VT3→L→R→VT2→a→Tr的二次绕组→b流通,电源电压沿正半周期的方向施加到负载上,负载上有输出电压(ud=-u2)和电流。此时电源电压反向加到VT1、VT4上,使其承受反压而变为关断状态。晶闸管VT2、VT3一直要导通到下一周期ωt=2π+α处再次触发晶闸管VT1、VT4为止。在单向桥式半控整流电路中,VT1和VD4组成一对桥臂,VD2和VT3组成另一对桥臂。在u正半周,若4个管子均不导通,负载电流id为零,ud也为零,VT1、VD4串联承受电压u,设VT1和VD4的漏电阻相等,则各承受u的一半。若在触发角处给VT1加触发脉冲,VT1和VD4即导通,电流从电源a端经VT1、R、VD4流回电源b端。当u过零时,流经晶闸管的电流也降到零,VT1和VD4关断。在u负半周,仍在触发延迟角处触发VD2和VT3,VD2和VT3导通,电流从电源b端流出,经VT3、R、VD2流回电源a端。到u过零时,电流又降为零,VD2和VT3关断。此后又是VT1和VD4导通,如此循环地工作下去。晶闸管承受的最大正向电压和反向电压分别为根号2/2·U和根号2·U。由于在交流电源的正负半周都有整流输出电流流过负载,故该电路为全波整流。在u一个周期内,整流电压波形脉动2次,脉动次数多于半波整流电路,该电路属于双脉波整流电路。

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