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| Title: | Voltage balancing control of diode-clamped multilevel rectifier/inverter systems | |
| Author (s): | Zhiguo Pan Fang Zheng Peng Corzine, Keith Stefanovic, V.R. Leuthen, J.M. Gataric, S. | |
| Department/Lab Affiliations: | Electrical and Computer Engineering Power Systems Laboratory Real-Time Power and Intelligent Systems Laboratory | |
| Keywords: | Multilevel converter PWM PWM invertors PWM rectifiers dc bus voltage regulation diode-clamped multilevel inverter systems diode-clamped multilevel rectifier systems frequency control frequency switching control pulsewidth modulation total harmonic distortion voltage balance theory voltage balancing voltage balancing control voltage control | |
| Issue Date: | 2005 | |
| Publisher: | Institute of Electrical and Electronics Engineers | |
| Citation: | Zhiguo Pan; Fang Zheng Peng; Corzine, K.A.; Stefanovic, V.R.; Leuthen, J.M.; Gataric, S., "Voltage balancing control of diode-clamped multilevel rectifierinverter systems" IEEE Transactions on Industry Applications, vol.41, no.6 pp. 1698- 1706, Nov.-Dec. 2005 | |
| Abstract: | This paper presents a new voltage balancing control for the diode-clamped multilevel rectifier/inverter system. A complete analysis of the voltage balance theory for a five-level back-to-back system is given. The analysis is based on fundamental frequency switching control and then extended to pulsewidth modulation (PWM). The method involves obtaining optimal switching angles; a process that is described in detail herein. The proposed control strategy regulates the dc bus voltage, balances the capacitors, and decreases the harmonic components of the voltage and current. Simulation and experimental results demonstrate the validity of the optimizing method and control theory. | |
| Type: | Article - Conference proceedings text | |
| Copyright Notice: | This material is presented to ensure timely dissemination of scholarly and technical work. Copyright and all rights therein are retained by authors or by other copyright holders. All persons copying this information are expected to adhere to the terms and constraints invoked by each author's copyright. In most cases, these works may not be reposted without the explicit permission of the copyright holder. FULL COPYRIGHT INFORMATION: | |
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| title | Voltage balancing control of diode-clamped multilevel rectifier/inverter systems | |
| contributor.author | Zhiguo Pan | |
| contributor.author | Fang Zheng Peng | |
| contributor.author | Corzine, Keith | |
| contributor.author | Stefanovic, V.R. | |
| contributor.author | Leuthen, J.M. | |
| contributor.author | Gataric, S. | |
| contributor.deptlab | Electrical and Computer Engineering | |
| contributor.deptlab | Power Systems Laboratory | |
| contributor.deptlab | Real-Time Power and Intelligent Systems Laboratory | |
| subject | Multilevel converter | |
| subject | PWM | |
| subject | PWM invertors | |
| subject | PWM rectifiers | |
| subject | dc bus voltage regulation | |
| subject | diode-clamped multilevel inverter systems | |
| subject | diode-clamped multilevel rectifier systems | |
| subject | frequency control | |
| subject | frequency switching control | |
| subject | pulsewidth modulation | |
| subject | total harmonic distortion | |
| subject | voltage balance theory | |
| subject | voltage balancing | |
| subject | voltage balancing control | |
| subject | voltage control | |
| date.issued | 2005 | |
| date.submitted | 2007 | |
| publisher | Institute of Electrical and Electronics Engineers | |
| identifier.citation | Zhiguo Pan; Fang Zheng Peng; Corzine, K.A.; Stefanovic, V.R.; Leuthen, J.M.; Gataric, S., "Voltage balancing control of diode-clamped multilevel rectifierinverter systems" IEEE Transactions on Industry Applications, vol.41, no.6 pp. 1698- 1706, Nov.-Dec. 2005 | |
| identifier.issn | 0093-9994 | |
| identifier.pub.URI | ||
| description.abstract | This paper presents a new voltage balancing control for the diode-clamped multilevel rectifier/inverter system. A complete analysis of the voltage balance theory for a five-level back-to-back system is given. The analysis is based on fundamental frequency switching control and then extended to pulsewidth modulation (PWM). The method involves obtaining optimal switching angles; a process that is described in detail herein. The proposed control strategy regulates the dc bus voltage, balances the capacitors, and decreases the harmonic components of the voltage and current. Simulation and experimental results demonstrate the validity of the optimizing method and control theory. | |
| type | Article - Conference proceedings | |
| type.DCMIType | text | |
| type.status | Final version | |
| rights | This material is presented to ensure timely dissemination of scholarly and technical work. Copyright and all rights therein are retained by authors or by other copyright holders. All persons copying this information are expected to adhere to the terms and constraints invoked by each author's copyright. In most cases, these works may not be reposted without the explicit permission of the copyright holder. | |
| rights.URI | ||
| date.accessioned | 2007-04-05T14:24:57Z | |
| date.available | 2007-04-05T14:24:56Z | |
| identifier.persist.URI | ||
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