Analysis of symmetrical pulse width modulation strategies for matrix converters
This paper presents a new and easy way to understand the derivation of the modulation functions for matrix converters. It is shown how the duty cycles can be calculated using techniques known from the back-to-back (B2B) voltage source inverter (VSI), thus making the subject accessible to people with...
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Published in | IEEE 33rd Annual Power Electronics Specialists Conference 2002 Vol. 2; pp. 899 - 904 vol.2 |
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Main Authors | , , , |
Format | Conference Proceeding |
Language | English |
Published |
IEEE
2002
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Subjects | |
Online Access | Get full text |
ISBN | 078037262X 9780780372627 |
DOI | 10.1109/PSEC.2002.1022568 |
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Abstract | This paper presents a new and easy way to understand the derivation of the modulation functions for matrix converters. It is shown how the duty cycles can be calculated using techniques known from the back-to-back (B2B) voltage source inverter (VSI), thus making the subject accessible to people with prior knowledge in standard drives. A new modulation strategy is presented minimizing harmonic distortion compared to the standard double-sided space vector modulation for matrix converters. An improvement to an existing modulator is also presented where the proposed modification improves the harmonic performance. The strategies are compared both analytically and by the use of both simulations and measurements on a 12 kW matrix converter prototype. It is found that the proposed modulator has superior performance compared to modulators with equal switching frequencies and an equal number of switchings. |
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AbstractList | This paper presents a new and easy way to understand the derivation of the modulation functions for matrix converters. It is shown how the duty cycles can be calculated using techniques known from the back-to-back (B2B) voltage source inverter (VSI), thus making the subject accessible to people with prior knowledge in standard drives. A new modulation strategy is presented minimizing harmonic distortion compared to the standard double-sided space vector modulation for matrix converters. An improvement to an existing modulator is also presented where the proposed modification improves the harmonic performance. The strategies are compared both analytically and by the use of both simulations and measurements on a 12 kW matrix converter prototype. It is found that the proposed modulator has superior performance compared to modulators with equal switching frequencies and an equal number of switchings. |
Author | Helle, L. Jorgensen, A.H. Larsen, K.B. Blaabjerg, F. |
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Snippet | This paper presents a new and easy way to understand the derivation of the modulation functions for matrix converters. It is shown how the duty cycles can be... |
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SubjectTerms | Analytical models Distortion measurement Harmonic distortion Matrix converters Pulse width modulation Pulse width modulation converters Pulse width modulation inverters Switching frequency Virtual prototyping Voltage |
Title | Analysis of symmetrical pulse width modulation strategies for matrix converters |
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