Power conversion system with connection circuitry and replaceable busbar set
A power conversion system includes a connection circuitry and a plurality of power conversion groups. The connection circuitry includes a plurality of input terminals, a plurality of output terminals and a busbar set that selectively connects the plurality of input terminals to the plurality of output terminals. The plurality of input terminals may receive an input voltage; the plurality of output terminals may output a plurality of voltages; and the busbar set is replaceable and is selected according to a type of the input voltage. The plurality of power conversion groups are connected to the plurality of output terminals and are configured to convert the voltages at the plurality of output terminals to generate an output voltage. Each power conversion group includes a plurality of power converters connected in parallel.
1 . A power conversion system, comprising:
a connection circuitry, comprising:
a plurality of input terminals, receiving an input voltage;
a plurality of output terminals, outputting a plurality of voltages; and
a busbar set, selectively connecting the plurality of input terminals to the plurality of output terminals, wherein the busbar set is replaceable, and the busbar set is selected according to a type of the input voltage; and
a plurality of power conversion groups, connecting to the plurality of output terminals, configured to convert the voltages at the plurality of output terminals to generate an output voltage, wherein each power conversion group comprises a plurality of power converters connected in parallel,
wherein the connection circuitry comprises first to tenth terminals, the plurality of input terminals comprises the first to fourth terminals of the connection circuitry, and the plurality of output terminals comprises the fifth to tenth terminals of the connection circuitry.
2 . The power conversion system of claim 1 , wherein
the input voltage is a three-phase voltage, a single-phase alternating-current (AC) voltage, or a direct-current (DC) voltage.
3 . The power conversion system of claim 1 , wherein
the plurality of power conversion groups comprises a first power conversion group, a second power conversion group and a third power conversion group,
the fifth terminal and the sixth terminal of the connection circuitry are electrically connected to the first power conversion group,
the seventh terminal and the eighth terminal of the connection circuitry are electrically connected to the second power conversion group, and
the ninth terminal and the tenth terminal of the connection circuitry are electrically connected to the third power conversion group.
4 . The power conversion system of claim 1 , wherein the busbar set is a first busbar set comprising:
an insulating layer of insulating material,
a first busbar, disposed on the insulating layer, electrically connecting the first terminal of the connection circuitry to the fifth terminal, the seventh terminal and the ninth terminal of the connection circuitry;
a second busbar, disposed on the insulating layer, electrically connecting the second terminal of the connection circuitry to the sixth terminal of the connection circuitry;
a third busbar, disposed on the insulating layer, electrically connecting the third terminal of the connection circuitry to the eighth terminal of the connection circuitry; and
a fourth busbar, disposed on the insulating layer, electrically connecting the fourth terminal of the connection circuitry to the tenth terminal of the connection circuitry.
5 . The power conversion system of claim 4 , wherein
the input voltage comprises a first phase signal, a second phase signal, a third phase signal and a neutral signal,
the first terminal of the connection circuitry receives the neutral phase signal,
the second terminal of the connection circuitry receives the first phase signal,
the third terminal of the connection circuitry receives the second phase signal, and
the fourth terminal of the connection circuitry receives the third phase signal.
6 . The power conversion system of claim 4 , wherein
the plurality of power converters in each power conversion group are AC-to-DC converters.
7 . The power conversion system of claim 1 , wherein the busbar set is a second busbar set comprising:
an insulating layer of insulating material;
a fifth busbar, disposed on the insulating layer, electrically connecting the second terminal of the connection circuitry to the fifth terminal and the seventh terminal of the connection circuitry;
a sixth busbar, disposed on the insulating layer, electrically connecting the third terminal of the connection circuitry to the sixth terminal and the ninth terminal of the connection circuitry; and
a seventh busbar, disposed on the insulating layer, electrically connecting the fourth terminal of the connection circuitry to the eighth terminal and the tenth terminal of the connection circuitry.
8 . The power conversion system of claim 7 , wherein
the input voltage is a three-phase voltage comprising a first phase signal, a second phase signal and a third phase signal,
the second terminal of the connection circuitry receives the first phase signal,
the third terminal of the connection circuitry receives the second phase signal, and
the fourth terminal of the connection circuitry receives the third phase signal.
9 . The power conversion system of claim 7 , wherein
the plurality of power converters in each power conversion group are AC-to-DC converters.
10 . The power conversion system of claim 1 , wherein the busbar set is a third busbar set comprising:
an insulating layer of insulating material;
an eighth busbar, disposed on the insulating layer, electrically connecting the first terminal of the connection circuitry to the fifth terminal, the seventh terminal, and the ninth terminal of the connection circuitry; and
a ninth busbar, disposed on the insulating layer, electrically connecting the fourth terminal of the connection circuitry to the sixth terminal, the eighth terminal and the tenth terminal of the connection circuitry.
11 . The power conversion system of claim 10 , wherein
the first terminal and the fourth terminal of the connection circuitry receive a DC supply voltage.
12 . The power conversion system of claim 10 , wherein
the plurality of power converters in each power conversion group are DC-to-DC converters.
13 . The power conversion system of claim 10 , wherein
the input voltage is a single-phase alternating-current (AC) voltage comprising a phase signal and a neutral signal,
the first terminal of the connection circuitry receives the neutral signal of the single-phase AC voltage, and
the fourth terminal of the connection circuitry receives the phase signal of the single-phase voltage.
14 . The power conversion system of claim 10 , wherein
the plurality of power converters in each power conversion group are AC-to-DC converters.
15 . The power conversion system of claim 1 , wherein the busbar set is a fourth busbar set comprising:
an insulating layer of insulating material;
a tenth busbar, disposed on the insulating layer, electrically connecting the second terminal of the connection circuitry to the fifth terminal, the seventh terminal, and the ninth terminal of the connection circuitry; and
an eleventh busbar, disposed on the insulating layer, electrically connecting the fourth terminal of the connection circuitry to the sixth terminal, the eighth terminal and the tenth terminal of the connection circuitry.
16 . The power conversion system of claim 15 , wherein
the input voltage is a three-phase voltage comprising a first phase signal, a second phase signal, a third phase signal and a neutral signal,
the second terminal of the connection circuitry receives the first phase signal of the three-phase voltage, and
the fourth terminal of the connection circuitry receives the third phase signal of the three-phase voltage.
17 . The power conversion system of claim 16 , wherein
the plurality of power converters in each power conversion group are AC-to-DC converters.