IPC분류정보
국가/구분 |
United States(US) Patent
등록
|
국제특허분류(IPC7판) |
|
출원번호 |
US-0198505
(1994-02-18)
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우선권정보 |
FR-0002050 (1993-02-23) |
발명자
/ 주소 |
- Dargent Thierry (Nozay FRX)
|
출원인 / 주소 |
- Aerospatiale Societe Nationale Industrielle (FRX 07)
|
인용정보 |
피인용 횟수 :
22 인용 특허 :
0 |
초록
▼
A reversible electric device M is connected in an H bridge with a first side formed by first top and bottom switches and a second side formed by second top and bottom switches. The current Im flowing in the device from the first side to the second side is determined cyclically with a given constant
A reversible electric device M is connected in an H bridge with a first side formed by first top and bottom switches and a second side formed by second top and bottom switches. The current Im flowing in the device from the first side to the second side is determined cyclically with a given constant switching frequency. The difference DDD
대표청구항
▼
A method for controlling a current being applied to a reversible electric device having an input and an output, said method comprising the steps of: providing an H bridge having a positive terminal and a negative terminal connected to said reversible electric device; connecting a first center termin
A method for controlling a current being applied to a reversible electric device having an input and an output, said method comprising the steps of: providing an H bridge having a positive terminal and a negative terminal connected to said reversible electric device; connecting a first center terminal of said H bridge to said input of said reversible electric device and connecting a second center terminal of said H bridge to said output of said reversible electric device, connecting a first top switch of said H bridge between said input of said reversible electric device and said positive terminal of said H bridge, connecting a second top switch of said H bridge between said output of said reversible electric device and said positive terminal of said H bridge, connecting a first bottom switch of said H bridge between said input of said reversible electric device and said negative terminal of said H bridge, and connecting a second bottom switch between said output of said reversible electric device and said negative terminal of said H bridge; determining a measured current (Im) running through said reversible electric motor; setting an instantaneous set point current (Ico); determining a current difference (Dco) and said measured current (Im); selecting a control logic means having a first input from said instantaneous set point current, a second input from said current difference, a first output line connected to said first top switch for transferring a first control signal to said first top switch, a second output line connected to said second top switch for transferring a second control signal to said second top switch, a third output line connected to said first bottom switch for transferring a third control signal to said first bottom switch, and a fourth output line connected to said second bottom switch for transferring a fourth control signal to said second bottom switch; using said control logic means to calculate each of said first, second, third, and fourth control signals to control said reversible electric device; selecting a switching frequency determining successive cycles having a constant switching period Tc, wherein said step of calculating each of said first, second, third, and fourth control signals for transferring to said switches further comprises for each cycle of said successive cycles the steps of: defining a reference current I having a value selected from the set of said instantaneous set point current and said measured current; determining Ua as a difference in electrical potential between said positive terminal and said negative terminal of said H bridge; applying a mean voltage (Um) to said reversible electric device;. selecting a correlation law F by the equation: F(DUm/Ua; selecting T1, T2, T3, and T4 as binary values of said first, second, third, and fourth control signals, respectively, wherein said first control signal turns said first top switch on when T1=1 and off when T1=0, wherein said second control signal turns said second top switch on when T2=1 and off when T2=0, wherein said third control signal turns said first bottom switch on when T3=1 and off when T3=0, wherein said fourth control signal turns said second bottom switch on when T4=1 and off when T4=0, and wherein T1, T2, T3, and T4 are the binary logical complements of T1, T2, T3, and T4; dividing said cycle into a first part and a second part, said cycle having a cycle duration, said first part of said cycle defining a first part duration; determining a cyclic ratio R, said cyclic ratio being a ratio of said first part duration and said cycle duration; and determining binary values for T1, T2, T3, and T4 for said first part and for said second part based upon said reference current (I) and said current difference (D0 and D0, then R=F(D0F(D1, R=0 if F(D0, R=1 if F(D1, T1=T3=1 and T2=T4=0 during said first part of said switching period Tc, and T1=T4=T2=T3 during said second part of said switching period Tc; if I0 and D0: R=1+F(D0F(D1, R=0 if 1+F(D0, R=1 if 1+F(D1, T1=T4=T2=T3 during said first part, and T1=T3=0 and T2=T4=1 during said second part; and if I and D1+F(D2 if 0(1+F(D2R=0 if (1+F(D2R=1 if (1+F(D2>1, T1=T3=1 and T2=T4=0 during said first part, and T1=T3=0 and T2=T4=1 during said second part.
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