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Journal articles on the topic '5L-ANPC'

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1

Lee, Sze Sing. "A Family of 5-Level Boost-Active Neutral-Point-Clamped (5L-BANPC) Inverters with Full DC-Link Voltage Utilization Designed Using Half-Bridges." Energies 17, no. 12 (2024): 2798. http://dx.doi.org/10.3390/en17122798.

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Conventional 5-level active neutral-point-clamped (5L-ANPC) topology and state-of-the-art 5-level hybrid active neutral-point-clamped (5L-HANPC) topology are popular for inverter applications. However, their dc-link voltage utilization is limited to only 50%. With the maximum voltage level generated by only half dc-link voltage, these inverters are not capable of boosting voltage in their ac output. To resolve these drawbacks, this paper proposes a family of four novel 5-level boost-active neutral-point-clamped (5L-BANPC) inverters. Without requiring any flying capacitors, the proposed topolog
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2

El-Alami, Adnane, Radouane Majdoul, and Abdelhafid Ait Elmahjoub. "A novel eight-switch nine-level modified ANPC inverter topology and its optimal modulation strategy." International Journal of Power Electronics and Drive Systems (IJPEDS) 15, no. 4 (2024): 2234. http://dx.doi.org/10.11591/ijpeds.v15.i4.pp2234-2242.

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An eight-switch nine-level modified ANPC inverter (8S-9L-MANPC) is designed and simulated in this paper. With this topology, only one DC voltage source and eight active semiconductor switches are required, significantly reducing system size, weight, and cost. The structure consists of a five-level ANPC inverter cascaded with a two-level leg converter. This arrangement extends the 5L-ANPC structure to a 9L configuration without requiring the use of additional capacitors. To maintain the balancing of the flying capacitor (FC), a modulation strategy using a switching state redundancy-based contro
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3

El-Alami, Adnane, Radouane Majdoul, and Abdelhafid Ait Elmahjoub. "A novel eight-switch nine-level modified ANPC inverter topology and its optimal modulation strategy." International Journal of Power Electronics and Drive Systems (IJPEDS) 15, no. 4 (2024): 2234–42. https://doi.org/10.11591/ijpeds.v15.i4.pp2234-2242.

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An eight-switch nine-level modified ANPC inverter (8S-9L-MANPC) is designed and simulated in this paper. With this topology, only one DC voltage source and eight active semiconductor switches are required, significantly reducing system size, weight, and cost. The structure consists of a five-level ANPC inverter cascaded with a two-level leg converter. This arrangement extends the 5L-ANPC structure to a 9L configuration without requiring the use of additional capacitors. To maintain the balancing of the flying capacitor (FC), a modulation strategy using a switching state redundancy-based contro
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4

Tan, Guojun, Qingwei Deng, and Zhan Liu. "An Optimized SVPWM Strategy for Five-Level Active NPC (5L-ANPC) Converter." IEEE Transactions on Power Electronics 29, no. 1 (2014): 386–95. http://dx.doi.org/10.1109/tpel.2013.2248172.

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5

Wang, Fusheng, Sai Weng, Lizhong Ye, and Tao Chen. "A Novel Low Common-Mode Voltage Modulation Strategy for ANPC-5L Inverter." E3S Web of Conferences 185 (2020): 01015. http://dx.doi.org/10.1051/e3sconf/202018501015.

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In order to suppress the leakage current of the active neutral point clamed five-level (ANPC-5L) inverter, this paper proposes a novel low common-mode voltage (CMV) modulation strategy based on the space vector modulation thought. Only the 55 voltage vectors with low CMV amplitude instead of all 125 voltage vectors are utilized. The CMV amplitude is suppressed to one-twelfth of the DC bus voltage (Vdc). In the simplified five-level space vector diagram, “obtuse triangle” synthesis principle is used to control the CMV changes twice in each carrier cycle, and get lower output current total harmo
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6

Wang, Kun, Yingfei Xu, Guangdi Li, et al. "Switching State Sequences-Based Modulation Scheme for T-Type 5L-ANPC Converter." IEEE Access 7 (2019): 117627–38. http://dx.doi.org/10.1109/access.2019.2930974.

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7

Chaudhuri, Toufann, Alfred Rufer, and Peter K. Steimer. "The Common Cross-Connected Stage for the 5L ANPC Medium Voltage Multilevel Inverter." IEEE Transactions on Industrial Electronics 57, no. 7 (2010): 2279–86. http://dx.doi.org/10.1109/tie.2009.2033725.

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8

Hoffmann, Vinícius G., Felipe J. Zimann, Cassiano Rech, and Alessandro L. Batschauer. "Desenvolvimento de um Inversor ANPC de 5 Níveis de Tensão Utilizando Célula de Comutação Multiestado." Eletrônica de Potência 30 (July 15, 2025): e202540. https://doi.org/10.18618/rep.e202540.

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Este artigo apresenta o projeto de um conversor ANPC (Active Neutral Point Clamped) de 5 níveis de tensão utilizando uma Célula de Comutação Multiestado (MSSC), operando como inversor. O inversor é associado a três opções de filtros indutivos na saída: um indutor convencional, um conjunto de indutores intercalados e um conjunto de indutores acoplados. Os parâmetros avaliados para estes filtros incluem massa, volume, perdas, elevação de temperatura e eficiência quando combinados com o inversor. As principais características do conversor ANPC-5L-MSSC incluem fluxo bidirecional de potência, baixa
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9

Liu, Zhan, Peiyuan Li, Yang Yang, Bin Li, and Zhenglong Xia. "Improved self‐balancing voltage five‐level ANPC converter and its control strategy." International Journal of Circuit Theory and Applications, September 15, 2023. http://dx.doi.org/10.1002/cta.3807.

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SummaryFive‐level active neutral‐point‐clamped (5L‐ANPC) converters have great practical potential in the field of medium and high voltage variable frequency speed regulation. However, the dynamic and static voltage imbalance of the series IGBTs may cause permanent damage to the device, which limits its popularization and application. In this paper, an improved self‐balancing voltage 5L‐ANPC topology (ISBV‐5L‐ANPC) is proposed to address such voltage balancing problem as series switches and high voltage leaps, which realizes dynamic and static voltage equalization by connecting the self‐balanc
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10

Liu, Zhan, Junru Chen, Josep M. Guerrero, Qiang Wang, Peiyuan Li, and Zhenglong Xia. "A Review of Five-level Active Neutral-Point Clamped (5L-ANPC) Converter." IEEE Transactions on Transportation Electrification, 2025, 1. https://doi.org/10.1109/tte.2025.3586305.

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11

Zhong, Liping, and Song Hu. "Vector decomposition and model predictive control based hybrid PWM algorithm for 5L-ANPC inverter." International Journal of Electronics, July 7, 2021, 1–20. http://dx.doi.org/10.1080/00207217.2021.1941294.

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12

Zhou, Dehong, Li Ding, and Yunwei Li. "Two-Stage Optimization-Based Model Predictive Control of 5L-ANPC Converter-Fed PMSM Drives." IEEE Transactions on Industrial Electronics, 2020, 1. http://dx.doi.org/10.1109/tie.2020.2984436.

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13

Liu, Zhan, Yang Yang, Peiyuan Li, Bin Li, and Guifeng Wang. "Improved double-vector model predictive control to reduce current THD for ANPC-5L inverters." Electrical Engineering, October 20, 2023. http://dx.doi.org/10.1007/s00202-023-02068-y.

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14

Liu, Zhan, Jiawei Fu, Yang Yang, Quangen Li, Hua Zhou, and Qiang Wang. "An improved double-vector model predictive control to eliminate multilevel jumps for 5L-ANPC." Electrical Engineering, June 1, 2025. https://doi.org/10.1007/s00202-025-03150-3.

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15

Liu, Chang, Chunshui Du, Xiangyang Xing, et al. "Leakage Current Suppression of Transformer-less 5L-ANPC Inverter With Lower Ripples Model Predictive Control." IEEE Transactions on Industry Applications, 2022, 1. http://dx.doi.org/10.1109/tia.2022.3178818.

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16

Kefeng, Li, Xiao Fei, Liu Jilong, et al. "Space Vector Pulse Width Modulation Strategy for ANPC-5L Inverter based on Model Predictive Control." IEEE Journal of Emerging and Selected Topics in Power Electronics, 2023, 1. http://dx.doi.org/10.1109/jestpe.2023.3257572.

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17

Hakami, Samer Saleh, Sadeq Ali Qasem Mohammed, and Kyo-Beum Lee. "An Optimized Hybrid Unipolar PWM Technique for Ripple Reduction in Flying Capacitor of 5L-ANPC Converters." IEEE Transactions on Industrial Electronics, 2024, 1–11. https://doi.org/10.1109/tie.2024.3519625.

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18

Ren, Qiguang, Chang Liu, Xiangyang Xing, and Chenghui Zhang. "Low-Switching-Loss Model Predictive Control Methods With Constant Switching Frequency for Single-Phase 5L-ANPC Converters." IEEE Transactions on Transportation Electrification, 2024, 1. http://dx.doi.org/10.1109/tte.2024.3430292.

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19

Lee, Sze Sing, Yongheng Yang, and Yam Siwakoti. "A Novel Single-Stage Five-Level Common-Ground-Boost-Type Active Neutral-Point-Clamped (5L-CGBT-ANPC) Inverter." IEEE Transactions on Power Electronics, 2020, 1. http://dx.doi.org/10.1109/tpel.2020.3037720.

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20

Lee, Sze Sing, Shuyu Cao, Reza Barzegarkhoo, Majid Farhangi, and Yam P. Siwakoti. "Single-Phase 5-Level Split-Midpoint Cross-Clamped (5L-SMCC) Inverter: An Alternative to the Two-Stage ANPC Topology." IEEE Journal of Emerging and Selected Topics in Power Electronics, 2023, 1. http://dx.doi.org/10.1109/jestpe.2023.3236012.

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21

Yan, Shaomin, Chengmin Li, Yue Cui, Hao Zhang, and Qingyun Yang. "A Low Computing FCS-MPC Based on Voltage Vector Tracking Algorithm with CMVs Suppression and Capacitor Charging Balance Algorithm Without Weight Factors for ANPC 3P-5L Converters." IEEE Transactions on Power Electronics, 2024, 1–10. http://dx.doi.org/10.1109/tpel.2024.3364680.

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