A Fractional Order PI (FOPI) Controller Design For Shunt Active Power Filter To Improve The Power Quality

被引:0
|
作者
Srivastava, Abhishek [1 ]
Das, Dushmanta Kumar [1 ]
Gurumurthy, Gandikota [1 ]
机构
[1] NIT Nagaland, Dept EEE, Nagaland 797103, India
关键词
Harmonic Elimination; Power Quality Improvement; Shunt Active Power Filter (SAPF); Fractional order Proportional Integral (FOPI) controller; SLIDING-MODE; IMPLEMENTATION;
D O I
暂无
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
In this article, a Fractional Order Proportional Integral (FOPI) controller based shunt active power filter (SAPF) is proposed. The FOPI controller is designed to have a constant voltage of the DC-Link of the SAPF which is used for the elimination of harmonics and there by to improve the power quality. To design the FOPI controller, phase margin, gain crossover frequency and velocity error constant are taken as desired specifications. For harmonic current extraction and gate signal generation, instantaneous active and reactive power (P-Q) approach and pulse width modulation technique (PWM) have been used. In order to show the effectiveness of the proposed FOPI controller in maintaining the a constant voltage and in eliminating harmonics thereby improving the power quality of the system, SAPF model is developed in MATLAB/SIMULINK and the effectiveness of the designed FOPI controller is analyzed. The results obtained with FOPI controller illustrates that the FOPI makes the system to have a the constant voltage of the DC-Link and compensates the harmonic components present in the system.
引用
收藏
页码:2761 / 2766
页数:6
相关论文
共 50 条
  • [41] Shunt active power filter using Hysteresis and PI control for improving the power quality using matlab.
    Arun, R.
    Ramkiran, B.
    Ayyapan
    PROCEEDINGS OF 2015 ONLINE INTERNATIONAL CONFERENCE ON GREEN ENGINEERING AND TECHNOLOGIES (IC-GET), 2015,
  • [42] Power Quality Improvement using Shunt Active Filter
    Archana, K.
    Sumukha, M. S.
    Thousif, Mohammed M.
    2017 INTERNATIONAL CONFERENCE ON CURRENT TRENDS IN COMPUTER, ELECTRICAL, ELECTRONICS AND COMMUNICATION (CTCEEC), 2017, : 622 - 626
  • [43] Design of Fractional-Order PI controller for DC-DC Power Converters
    Prajapati, Saurav
    Garg, Man Mohan
    Prithvi, Boddu
    2018 8TH IEEE INDIA INTERNATIONAL CONFERENCE ON POWER ELECTRONICS (IICPE), 2018,
  • [44] Shunt Active Power Filter For MV 12-Pulse Rectifier Using PI With SMC Controller
    Patil, Sagar S.
    Metri, R. A.
    Shinde, Omkar K.
    PROCEEDINGS OF 2017 IEEE INTERNATIONAL CONFERENCE ON CIRCUIT ,POWER AND COMPUTING TECHNOLOGIES (ICCPCT), 2017,
  • [45] Performance Comparison of PI and Fuzzy Controller for Indirect Current Control Based Shunt Active Power Filter
    Gotherwal, Niharika
    Ray, Soumyadeep
    Gupta, Nitin
    Saxena, Dipti
    PROCEEDINGS OF THE FIRST IEEE INTERNATIONAL CONFERENCE ON POWER ELECTRONICS, INTELLIGENT CONTROL AND ENERGY SYSTEMS (ICPEICES 2016), 2016,
  • [46] Fractional-Order PID Controller for Active Power Filter Using Active Disturbance Rejection Control
    Liu, Nixuan
    Cao, Siqi
    Fei, Juntao
    MATHEMATICAL PROBLEMS IN ENGINEERING, 2019, 2019
  • [47] Design of shunt active power filter based on DSP
    Xu Xiangzheng
    Chen Baichao
    Proceedings of the First International Symposium on Test Automation & Instrumentation, Vols 1 - 3, 2006, : 356 - 359
  • [48] Design of H∞ control for shunt active power filter
    Zhou, Xing-Jia
    Shen, Chen
    Mei, Sheng-Wei
    Liu, Feng
    Cheng, Jian-Zhou
    Dianli Zidonghua Shebei / Electric Power Automation Equipment, 2006, 26 (08): : 45 - 48
  • [49] Design of an Asymmetric Multilevel Shunt Active Power Filter
    Munoz, Javier
    Rohten, Jaime
    Baier, Carlos
    Rivera, Marco
    Espinosa, Eduardo
    Ramirez, Roberto
    2015 IEEE 24TH INTERNATIONAL SYMPOSIUM ON INDUSTRIAL ELECTRONICS (ISIE), 2015, : 1062 - 1067
  • [50] Active power filter design for improving power quality
    Xiao, Junming
    Zhang, Xiangming
    Wen, Shengjun
    Liu, Zhengbo
    2015 INTERNATIONAL CONFERENCE ON ADVANCED MECHATRONIC SYSTEMS (ICAMECHS), 2015, : 557 - 561