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2016 | OriginalPaper | Buchkapitel

9. Application of Circuit DQ Transformation to Current Source Inverter

verfasst von : Chun T. Rim

Erschienen in: Phasor Power Electronics

Verlag: Springer Singapore

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Abstract

The circuit DQ transformation is used to analyze a three-phase controlled-current PWM rectifier in this chapter. The DC operating point and AC transfer functions are completely determined. Most features of the converter are clearly interpreted. They are (1) the output voltage can be controlled from zero to maximum, (2) the system is equivalently an ideal current source in the steady state, (3) the system can be described as linear circuits, and (4) the input power factor can be arbitrarily controlled within a certain control range.

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Literatur
1.
Zurück zum Zitat Rim CT, Choi NS, Cho GC, Cho GH (1994) A complete DC and AC analysis of three-phase controlled-current PWM rectifier using circuit D-Q transformation. IEEE Trans Power Electron 9(4):390–396 Rim CT, Choi NS, Cho GC, Cho GH (1994) A complete DC and AC analysis of three-phase controlled-current PWM rectifier using circuit D-Q transformation. IEEE Trans Power Electron 9(4):390–396
2.
Zurück zum Zitat Han SB, Choi NS, Chun T, Rim T, Cho GH (1998) Modeling and analysis of static and dynamic characteristics for buck type three-phase PWM rectifier by circuit DQ transformation. IEEE Trans Power Electron 13(2):323–336 Han SB, Choi NS, Chun T, Rim T, Cho GH (1998) Modeling and analysis of static and dynamic characteristics for buck type three-phase PWM rectifier by circuit DQ transformation. IEEE Trans Power Electron 13(2):323–336
3.
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4.
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Zurück zum Zitat Dixon JW, Kulkami AB, Nishimoto M, Ooi BT (1987) Characteristic of a controlled-current PWM rectifier-inverter link. IEEE Trans Indust Appl IA-23(6): 1022–1028 Dixon JW, Kulkami AB, Nishimoto M, Ooi BT (1987) Characteristic of a controlled-current PWM rectifier-inverter link. IEEE Trans Indust Appl IA-23(6): 1022–1028
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Metadaten
Titel
Application of Circuit DQ Transformation to Current Source Inverter
verfasst von
Chun T. Rim
Copyright-Jahr
2016
Verlag
Springer Singapore
DOI
https://doi.org/10.1007/978-981-10-0536-7_9