New Junction Temperature Balancing Method for a Three Level Active NPC Converter

被引:4
|
作者
Hauk, Erika [1 ]
Alvarez, Rodrigo [1 ]
Weber, Jens [1 ]
Bernet, Steffen [1 ]
Andler, Daniel [2 ]
Rodriguez, Jose [2 ]
机构
[1] Tech Univ Dresden, Fak Elektrotech & Informationstech, Elektrotechn Inst, D-01062 Dresden, Germany
[2] Univ Tecn Federico Santa Maria, Dept Elect, Valparaiso, Chile
关键词
Medium Voltage; Power Converter; Multi Level Converters; 3L-ANPC; Press-pack IGBT; Power Semiconductor Device; Thermal design;
D O I
10.1080/09398368.2012.11463818
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
The three-level Neutral Point Clamped Voltage Source Converter (3L-NPC VSC, 3L-ANPC VSC) has many attractive features like its high reliability and availability. Nowadays, this technology is mature and can be found in several industrial applications [1], [2]. Some common applications are pumps, fins, compressors, mixers, extruders, crushers, rolling mills, mine hoist drives and excavators. The three-level Active NPC VSC (3L-ANPC VSC) was introduced in 2001 to overcome the drawbacks of the conventional 3L-NPC VSC [3]. The 3L-ANPC VSC includes additionally active switches parallel to the NPC diodes for clamping the neutral tap of the converter It features 3 extra switch states in contrast to the conventional 3L-NPC VSC, which enable the possibility to reduce the temperature imbalance and/or to increase the output frequency or the converter power In order to use the potential of the 3L-ANPC VSC and to balance the losses among the semiconductors, the implementation of a temperature balancing strategy is necessary [4] and [5]. The medium voltage 3L-ANPC VSC is especially advantageous in the following applications: High power applications, where the required output power cannot be archived without a serial/parallel connection of devices. Medium voltage converters, where the switching frequency should be increased without decreasing the converter power (e.g. applications which require a sine filter or high speed applications). Applications where the nominal converter current is required at low modulation index and low fundamental frequencies (e.g. zero speed operating points, hot and cold rolling mill applications, converters for doubly fed induction generators, etc.). The starting point for the derivation of the new balancing algorithm was the Active Loss Balancing (ALB) system, which is reported in [4] and [5]. The new temperature balancing scheme profits from the features of Predictive Control [6] in order to precalculate the conduction and the switching losses and finally the temperature of each semiconductor up to the future commutation to the zero state, i.e. over the next period of the switching frequency. The precalculated maximal junction temperature will be used for the control strategy in order to determine the optimal switch state to be applied. Some additional features of the new balancing algorithm with respect to the ALB algorithm are: consideration of the conduction losses fed into the balancing algorithm, regard of the temperature ripple between two consecutive commutations and the use of a control criteria (cost function) in the selection of the zero state [6]. The algorithm is implemented in Matlab and compared with the 3L-NPC VSC using experimental data of a 4.5 kV Press-pack IGBT and Diode for the calculation of the losses. The comparison shows a potential to increase the output power of the 3L-ANPC VSC.
引用
收藏
页码:6 / 12
页数:7
相关论文
共 50 条
  • [41] Three-Level Two-Stage Decoupled Active NPC Converter with Si IGBT and SiC MOSFET
    Zhang, Di
    He, Jiangbiao
    Madhusoodhanan, Sachin
    2017 IEEE ENERGY CONVERSION CONGRESS AND EXPOSITION (ECCE), 2017, : 5671 - 5678
  • [42] Three-Level Two-Stage Decoupled Active NPC Converter With Si IGBT and SiC MOSFET
    Zhang, Di
    He, Jiangbiao
    Madhusoodhanan, Sachin
    IEEE TRANSACTIONS ON INDUSTRY APPLICATIONS, 2018, 54 (06) : 6169 - 6178
  • [43] Performance Evaluation of Si/SiC Hybrid Switch-Based Three-Level Active NPC Converter
    Liu, Haichen
    Zhao, Tiefu
    2021 THIRTY-SIXTH ANNUAL IEEE APPLIED POWER ELECTRONICS CONFERENCE AND EXPOSITION (APEC 2021), 2021, : 2058 - 2064
  • [44] Natural Balancing of the Neutral Point Voltage for a Three-Phase NPC Multilevel Converter
    Mohzani, Z.
    McGrath, B. P.
    Holmes, D. G.
    IECON 2011: 37TH ANNUAL CONFERENCE ON IEEE INDUSTRIAL ELECTRONICS SOCIETY, 2011, : 4445 - 4450
  • [45] A Novel Output LC Filter Design Method of High Power Three-Level NPC Converter
    Li Ning
    Zhi Na
    Zhang Hui
    Wnag Yue
    Wang Zhao'an
    2014 INTERNATIONAL ELECTRONICS AND APPLICATION CONFERENCE AND EXPOSITION (PEAC), 2014, : 68 - 71
  • [46] New Active Stacked NPC Multilevel Converter: Operation and Features
    Floricau, Dan
    Gateau, Guillaume
    Leredde, Alexandre
    IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2010, 57 (07) : 2272 - 2278
  • [47] A Novel Neutral Point Voltage Automatic Balancing Carrier-Based Modulation Strategy of Three-Level NPC Converter
    Li Ning
    Wang Yue
    Niu Ruigen
    Guo Wei
    Lei Wanjun
    Wang Zhao'an
    2014 INTERNATIONAL POWER ELECTRONICS CONFERENCE (IPEC-HIROSHIMA 2014 - ECCE-ASIA), 2014, : 475 - 479
  • [48] Pulse Pattern Optimization Based on Brute Force Method for Medium-Voltage Three-Level NPC Converter with Active Front End
    Cikac, Dominik
    Turk, Nikola
    Bulic, Neven
    Barbanti, Stefano
    ELECTRONICS, 2020, 9 (10) : 1 - 20
  • [49] A Comparison of Efficiency for three-level NPC and Active NPC Voltage Source Converters
    Floricau, Dan
    Popescu, Claudia-Laurenta
    Popescu, Mihai-Octavian
    Floricau, Elena
    Spataru, Lucian
    CPE: 2009 COMPATIBILITY AND POWER ELECTRONICS, 2009, : 331 - 336
  • [50] A new control method for the three level active neutral point clamped converter for low speed applications
    Parvulescu, Lucian
    Floricau, Dan
    Covrig, Mircea
    PRZEGLAD ELEKTROTECHNICZNY, 2011, 87 (05): : 253 - 256