DocumentCode :
45242
Title :
High-Quality Sine Wave Generation Using a Differential Boost Inverter at Higher Operating Frequency
Author :
Jha, Kapil ; Mishra, Shivakant ; Joshi, Akanksha
Author_Institution :
Indian Inst. of Technol. Kanpur, Kanpur, India
Volume :
51
Issue :
1
fYear :
2015
fDate :
Jan.-Feb. 2015
Firstpage :
373
Lastpage :
384
Abstract :
Buck-converter-based topologies are used to generate high-frequency sinusoidal outputs. Buck-based inversion circuits such as voltage source inverters or class-D amplifiers have inherent control-to-output linearity in large-signal sense. However, in these topologies, the instantaneous output is always smaller than the dc-input during linear modulation. A differential boost inverter (DBI) is a boost-based topology that is used to generate a sinusoidal output. In DBI, the instantaneous output can be higher or lower than the dc-input voltage. DBI exhibits nonlinear control-to-output behavior in large-signal dynamic sense. Therefore, generating a high-frequency sinusoidal output using this topology is a challenge. The issues associated with a DBI for high-frequency sine wave generation are characterized in this paper. Conventional linear and nonlinear control techniques fail to produce a high-quality sine wave output at higher operating frequency. A nonlinear feedback linearization technique is proposed, which forces the output to be linear with respect to the reference even at higher operating frequency. This leads to a high-frequency high-quality sine wave generation using a DBI. The proposed modulator is verified using a laboratory prototype to generate a sine wave up to 2 kHz. A triangular wave of 100-Hz frequency is also generated by the proposed technique. Superior dynamic responses of a dynamic linearizing modulator controlled DBI for a step change in frequency, load current, input voltage, and reference are also experimentally verified.
Keywords :
invertors; linearisation techniques; power convertors; waveform generators; DBI; buck-based inversion circuits; buck-converter-based topologies; class-D amplifiers; control-to-output linearity; differential boost inverter; nonlinear feedback linearization technique; sinewave generation; voltage source inverters; Equations; Frequency control; Frequency modulation; Inverters; Pulse width modulation; Voltage control; Differential boost inverter (DBI); dynamic linearizing modulator (DLM); high-frequency inverter;
fLanguage :
English
Journal_Title :
Industry Applications, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-9994
Type :
jour
DOI :
10.1109/TIA.2014.2330059
Filename :
6828776
Link To Document :
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