Power conversion system and method of power conversion
DCFirst Claim
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1. A method of reducing electromagnetic interference during multiple stage AC to DC power conversion comprising the steps ofconverting AC to high voltage DC by means of a three-phase/switch/level boost type pulse-width modulation rectifier;
- and converting higher voltage DC to lower voltage DC by means of a system of partial DC to DC converters connected in series at their primary sides, and connected in parallel at their secondary sides.
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Abstract
The invention relates to a method and apparatus for AC/DC conversion with continuous sinusoidal input currents, and a controlled isolated output voltage that shows one or more of the advantage of substantially reduced electromagnetic interference (EMI) noise and substantially reduced total harmonic distortion (THD). This power conversion system may, for example, incorporate the use of three-phase delta-connected inputs to further improve performance.
76 Citations
16 Claims
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1. A method of reducing electromagnetic interference during multiple stage AC to DC power conversion comprising the steps of
converting AC to high voltage DC by means of a three-phase/switch/level boost type pulse-width modulation rectifier; - and
converting higher voltage DC to lower voltage DC by means of a system of partial DC to DC converters connected in series at their primary sides, and connected in parallel at their secondary sides. - View Dependent Claims (2, 3, 4, 5)
filtering by means of common mode filters between converting the AC to high voltage DC and converting the higher voltage DC to lower voltage DC. -
3. The method of claim 1 further comprising the step of
filtering by means of common mode filters after converting higher voltage DC to lower voltage DC. -
4. The method of claim 1 further comprising the step of
repeating the conversion of higher voltage DC to lower voltage DC. -
5. The method of claim 4 further comprising the step of
filtering by means of common mode filters between the repeated conversion of DC to DC.
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6. An AC to DC power conversion system comprising
a first stage comprising a three phase/switch/level boost type pulse width modulation rectifier that converts AC to high voltage DC, said rectifier having two or more outputs; - and at said outputs
a second stage comprising a system of DC to DC converters connected to each other in series at their primary sides and connected to each other in parallel at their secondary sides. - View Dependent Claims (7, 8, 9, 10)
between the two stages, a pair of common mode filters connecting the high voltage output and low voltage output of the first stage with the positive input terminal and negative input terminal of the second stage; - and
a pair of series connected capacitors connecting the positive input terminal of the second stage, first to the neutral input terminal and then to the negative input terminal.
- and at said outputs
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10. The power conversion system of claim 6 wherein said outputs of the rectifier further comprise common mode filters.
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11. A method of reducing electromagnetic interference and total harmonic distortion in AC-DC power conversion comprising the steps of
providing a source of AC power; -
providing an apparatus comprising a first stage comprising a three phase/switch/level boost type pulse width modulation rectifier that converts AC to high voltage DC, said rectifier having two or more outputs; and
at two or more said outputsa second stage comprising a system of DC to DC converters connected to each other in series at their primary sides and connected to each other in parallel at their secondary sides; and
converting said AC power to DC by means of said apparatus.
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12. A method of reducing total harmonic distortion during multiple stage AC to DC power conversion comprising the steps of
converting AC to high voltage DC by means of a three-phase/switch/level boost type pulse-width modulation rectifier; - and
converting higher voltage DC to lower voltage DC by means of a system of partial DC to DC converters connected in series at their primary sides, and in parallel at their secondary sides. - View Dependent Claims (13, 14, 15, 16)
filtering by means of common mode filters between converting the AC to high voltage DC and converting the higher voltage DC to lower voltage DC. -
14. The method of claim 12 further comprising the step of
filtering by means of common mode filters after converting higher voltage DC to lower voltage DC. -
15. The method of claim 12 further comprising the step of
repeating the conversion of higher voltage DC to lower voltage DC. -
16. The method of claim 15 further comprising the step of filtering by means of common mode filters between the repeated conversion of DC to DC.
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Specification