Power quality improvement using multilevel inverter-based active filter for medium-voltage high-power distribution system: A comprehensive review

被引:0
作者
Ray S. [1 ]
Gupta N. [1 ]
Gupta R.A. [1 ]
机构
[1] Department of Electrical Engineering, MNIT Jaipur, Rajasthan, Jaipur
关键词
Active filter; Control technique; Multilevel inverter; Power quality;
D O I
10.1504/IJPELEC.2021.116645
中图分类号
学科分类号
摘要
Medium-voltage distribution system faces great challenges as the number of high-power loads is increasing which inject nonlinearity into the grid. On the other side, sinusoidal and uninterrupted voltage and current waveform at rated frequency is highly desirable at the consumer end. Two-level inverter-based active filter is facing great challenges in medium-voltage distribution network due to the use of high rating switching devices and use of a line-frequency transformer. Multilevel inverter (MLI) posses a great solution in such scenario as it generates higher voltage output with lower rating switching devices. MLI technology is widely accepted in medium to high-voltage industrial applications. Therefore, this paper presents a widespread review on MLI-based active filter (AF) by assessing its potential to replace two-level inverter-based AF in medium-voltage distribution sector. Different possible configurations, control techniques and their different applications are reviewed comprehensively. A list of 78 research papers is decisively examined and is appended for quick reference. Copyright © 2021 Inderscience Enterprises Ltd.
引用
收藏
页码:1 / 36
页数:35
相关论文
共 77 条
[1]  
Harmonic Currents, Static VAR Systems, pp. 1-13, (1988)
[2]  
Aburto V., Schneider M., Moran L., Dixon J., An active power filter implemented with a three-level NPC voltage-source inverter, Power Electronics Specialists Conference, PESC'97 Record, 28th Annual IEEE, 2, pp. 1121-1126, (1997)
[3]  
Akagi H., Kanazawa Y., Nabae A., Principles and compensation effectiveness of a instantaneous reactive power compensator devices, Meeting of the Power Semiconductor Converters Researchers, (1982)
[4]  
Akagi H., Nabae A., Atoh S., Control strategy of active power filters using multiple voltage-source PWM converters, IEEE Transactions on Industry Applications, IA-22, 3, pp. 460-465, (1986)
[5]  
Amini J., High performance shunt active power filter based on flying capacitor multilevel inverter using multi-stage ΣΔ modulator, 19th Iranian Conference on Electrical Engineering (ICEE), pp. 1-6, (2011)
[6]  
Anjana P., Gupta V., Tiwari H., Reducing harmonics in micro grid distribution system using APF with PI controller, T&D Conference and Exposition, 2014 IEEE PES, pp. 1-5, (2014)
[7]  
Asiminoaei L., Aeloiza E., Enjeti P.N., Blaabjerg F., Shunt active-power-filter topology based on parallel interleaved inverters, IEEE Transactions on Industrial Electronics, 55, 3, pp. 1175-1189, (2008)
[8]  
Basu M., Das S.P., Dubey G.K., Parallel converter scheme for high-power active power filters, IEE Proceedings-Electric Power Applications, 151, 4, pp. 460-466, (2004)
[9]  
Bhagwat P.M., Stefanovic V.R., Generalized structure of a multilevel PWM inverter, IEEE Transactions on Industry Applications, IA-19, 6, pp. 1057-1069, (1983)
[10]  
Chauhan N., Jana K.C., Cascaded multilevel inverter for underground traction drives, IEEE International Conference on Power Electronics, Drives and Energy Systems (PEDES), pp. 1-5, (2012)