三相モジュラー・マルチレベル・カスケード変換器(MMCC-DSCC)の非干渉制御
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概要
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This paper presents a theoretical analysis and control of a three-phase modular multilevel cascade converter based on double-star chopper-cells (MMCC-DSCC). The analysis and control are characterized by applying the so-called “αβ0” and “dq0” coordinate transformations to the converter. Existing analysis and control methods were unable to use any coordinate transformation because the three-phase converter was considered as three sets of single-phase converters that were analyzed and controlled independently. As a result, it was difficult to avoid mutual interferences among the three-phase ac currents, circulating currents inside the converter, and dc current. Power-flow analysis using the two coordinate transformations succeeds in decoupling these currents, as well as in deriving lucid relationships between the power flow and the circulating currents. Moreover, the power-flow analysis makes it possible to design a decoupled digital controller for balancing and regulating the dc mean voltages of all the floating dc capacitors. The validity of the design is confirmed by computer simulation using a software package of PSCAD/EMTDC.
- 電気学会 ; 1987-の論文
著者
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新村 直人
東京工業大学
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新村 直人
Department of Electrical and Electronic Engineering, Tokyo Institute of Technology
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赤木 泰文
Department of Electrical and Electronic Engineering, Tokyo Institute of Technology
関連論文
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- 三相モジュラー・マルチレベル・カスケード変換器(MMCC-DSCC)の非干渉制御
- 三相モジュラー・マルチレベル・カスケード変換器(MMCC-DSCC)の非干渉制御
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