System comprising an electrically excited machine
원문보기
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
H02P-001/24
H02P-006/14
H02J-007/00
H02J-007/14
B60L-011/18
H02M-007/49
H02M-007/483
출원번호
US-0984311
(2011-12-29)
등록번호
US-9425723
(2016-08-23)
우선권정보
DE-10 2011 003 940 (2011-02-10)
국제출원번호
PCT/EP2011/074244
(2011-12-29)
§371/§102 date
20130823
(20130823)
국제공개번호
WO2012/107150
(2012-08-16)
발명자
/ 주소
Feuerstack, Peter
Weissenborn, Erik
Kessler, Martin
출원인 / 주소
Robert Bosch GmbH
대리인 / 주소
Michael Best & Friedrich LLP
인용정보
피인용 횟수 :
0인용 특허 :
7
초록▼
A system includes an n-phase separately excited electrical machine, wherein n≧1, and a controllable first energy store that has n parallel energy supply branches. Every energy supply branch includes a first connection that is connected to a respective phase connection of the electrical machine, and
A system includes an n-phase separately excited electrical machine, wherein n≧1, and a controllable first energy store that has n parallel energy supply branches. Every energy supply branch includes a first connection that is connected to a respective phase connection of the electrical machine, and a second connection that is connected to a common reference bus. The reference bus is connected to a neutral point of the electrical machine via an exciter winding of the electrical machine.
대표청구항▼
1. A system comprising: an n-phase separately excited electric machine, wherein n≧1;a controllable first energy store, which has n parallel energy supply branches, wherein each of the energy supply branches has a first terminal, which is connected in each case to a phase terminal of the electric mac
1. A system comprising: an n-phase separately excited electric machine, wherein n≧1;a controllable first energy store, which has n parallel energy supply branches, wherein each of the energy supply branches has a first terminal, which is connected in each case to a phase terminal of the electric machine, and a second terminal, which is connected in each case to a common reference rail, and an exciter winding that is connected to a star point of the electric machine and to the common reference rail to conduct current between the star point of the electric machine and the common reference rail, wherein the exciter winding receives current only via the star point of the electric machine. 2. The system as claimed in claim 1, wherein the potential at the star point of the electric machine is changed by increasing or decreasing voltages at the energy supply branches. 3. The system as claimed in claim 1, wherein each of the n parallel energy supply branches has at least two series-connected energy storage modules, which in each case comprise at least one electrical energy storage cell having an associated controllable coupling unit. 4. The system as claimed in claim 1, wherein as the exciter winding is connected directly between the star point of the electric machine and the common reference rail to conduct current. 5. The system as claimed in claim 1, wherein the system is free from an external motor connection. 6. The system as claimed in claim 1, wherein the exciter winding is directly connected to the common reference rail. 7. The system as claimed in claim 1, wherein the exciter winding is only provided energy by the first energy store. 8. A method for operating a system having an n-phase separately excited electric machine, wherein n≧1, and a controllable first energy store, which has n parallel energy supply branches, the method comprising: providing a DC voltage component to each of the energy supply branches;feeding the DC voltage component into the phase terminals of the n-phase electric machine; andsupplying an exciter winding via a star point of the electric machine with the DC voltage component fed into the phase terminals in order to generate an excitation field in the electric machine,wherein the exciter winding only receives the DC voltage component via the star point. 9. The method as claimed in claim 8, wherein each of the energy supply branches of the first energy store has at least two series-connected energy storage modules, which in each case comprise at least one electrical energy storage cell having an associated controllable coupling unit, and wherein providing the DC voltage component involves connecting at least one of the energy storage modules into the respective energy supply branch. 10. The method as claimed in claim 8, wherein the exciter winding generates the excitation field in the electric machine, and the exciter winding is connected to a common reference rail of the electric machine, the exciter winding conducting current between the star point and the common reference rail. 11. The method as claimed in claim 8, including providing each of the energy supply branches with first terminals connected to a corresponding phase terminal of the n-phase electric machine, andproviding each of the energy supply branches with second terminals connected to a common reference rail, andproviding the common reference rail connected to the exciting winding of the electric machine. 12. A system comprising: an n-phase separately excited electric machine, wherein n≧1;a controllable first energy store, which has n parallel energy supply branches, wherein each of the energy supply branches has a first terminal, which is connected in each case to a phase terminal of the electric machine, and a second terminal, which is connected in each case to a common reference rail, and an exciter winding that is connected to a star point of the electric machine and to the common reference rail to conduct current between the star point of the electric machine and the common reference rail, wherein one end of the exciter winding is connected directly to the star point of the electric machine and another end of the exciter winding is connected directly to the common reference rail, and wherein the exciter winding is only provided energy by the first energy store.
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