Power Quality Improvement Using Shunt Active Power Filter

被引:0
|
作者
Patil, Sagar S. [1 ]
Metri, R. A. [2 ]
机构
[1] Rajarambapu Inst Technol, Dept Elect Engn, Elect Power Syst, Islampur 415414, India
[2] Rajarambapu Inst Technol, Dept Elect Engn, Islampur 415414, India
关键词
Eliminating the harmonics; Shunt Active Power Filter (SAPF); hysteresis current controller;
D O I
暂无
中图分类号
TP18 [人工智能理论];
学科分类号
081104 ; 0812 ; 0835 ; 1405 ;
摘要
In recent years, power electronics devices have evolved, and used for varies applications. Also, this device caused the problem of power quality in electrical system. In the utility side arc furnaces, variable frequency drives (VFD), personal computer, fluorescent lamp such non-linear load produces current harmonics. For consumer and distributed side the power quality is an important issue. The active power filter which is capable for improving the power quality and reactive power compensation. In this paper the harmonics problem which is created by non-linear load is discussed. Shunt active filter is used for eliminating the harmonics from non-linear load and in the retrieval technique for controlling the current hysteresis current controller is used. In this paper for producing the reference current instantaneous reactive power (PQ) theory is used. The simulation result of shunt active filter using PQ theory is carried out using matlab-simulink toolbox.
引用
收藏
页码:152 / 156
页数:5
相关论文
共 50 条
  • [31] Improvement of the Shunt Active Power Filter Dynamic Performance
    Sozanski, Krzysztof Piotr
    [J]. 2008 IEEE POWER ELECTRONICS SPECIALISTS CONFERENCE, VOLS 1-10, 2008, : 3684 - 3688
  • [32] Power Quality Enhancement using Shunt Active Power Filter Integrated with SMES coil
    Penthia, Trilochan
    Panda, Anup Kumar
    [J]. 2018 NATIONAL POWER ENGINEERING CONFERENCE (NPEC), 2018,
  • [33] Improvement of Dynamic Behavior of Shunt Active Power Filter Using Fuzzy Instantaneous Power Theory
    Eskandarian, Nasser
    Beromi, Yousef Alinejad
    Farhangi, Shahrokh
    [J]. JOURNAL OF POWER ELECTRONICS, 2014, 14 (06) : 1303 - 1313
  • [34] Power quality improvement with two compensation control strategies for Shunt Active Power Filter based on SMC
    Kaddari, Faiza
    Mazari, Benyounes
    Mihoub, Youcef
    Safa, Ahmed
    [J]. 3RD INTERNATIONAL SYMPOSIUM ON ENVIRONMENTAL FRIENDLY ENERGIES AND APPLICATIONS (EFEA 2014), 2014,
  • [35] Quality Improvement of Shunt Active Power Filter with Direct Instantaneous Power Estimator Based on Virtual Flux
    Saidi, Salem
    Abbassi, Rabeh
    Chebbi, Souad
    [J]. INTERNATIONAL JOURNAL OF CONTROL AUTOMATION AND SYSTEMS, 2016, 14 (05) : 1309 - 1321
  • [36] Quality improvement of shunt active power filter with direct instantaneous power estimator based on Virtual Flux
    Salem Saidi
    Rabeh Abbassi
    Souad Chebbi
    [J]. International Journal of Control, Automation and Systems, 2016, 14 : 1309 - 1321
  • [37] A Transformerless Single Phase Shunt Active Hybrid Power Filter for Power Quality Improvement for Electrified Transportations
    Mishra, Avinash
    Deokar, S. A.
    [J]. 2017 INTERNATIONAL CONFERENCE ON CURRENT TRENDS IN COMPUTER, ELECTRICAL, ELECTRONICS AND COMMUNICATION (CTCEEC), 2017, : 398 - 404
  • [38] Flatness based control of single phase multicellular shunt active power filter for power quality improvement
    Aourir, M.
    Abouloifa, A.
    El Otmani, F.
    Aouadi, C.
    Hamdoun, A.
    Lachkar, I.
    [J]. 2018 RENEWABLE ENERGIES, POWER SYSTEMS & GREEN INCLUSIVE ECONOMY (REPS-GIE), 2018,
  • [39] Normalized Sigmoid Function LMS Adaptive Filter based Shunt Hybrid Active Power Filter for Power Quality Improvement
    Daramukkala, Pavankumar
    Mohanty, Kanungo Barada
    Karthik, Markala
    Swain, Sushree Diptimayee
    Behera, Bhanu Pratap
    Naik, Venkata Ramana N.
    [J]. 2023 IEEE IAS GLOBAL CONFERENCE ON RENEWABLE ENERGY AND HYDROGEN TECHNOLOGIES, GLOBCONHT, 2023,
  • [40] Improvement of Power Quality Using a Robust Hybrid Series Active Power Filter
    Swain, Sushree Diptimayee
    Ray, Pravat Kumar
    Mohanty, Kanungo Barada
    [J]. IEEE TRANSACTIONS ON POWER ELECTRONICS, 2017, 32 (05) : 3490 - 3498