Journal of Guangdong University of Technology ›› 2023, Vol. 40 ›› Issue (05): 102-107.doi: 10.12052/gdutxb.220138

• Comprehensive Studies • Previous Articles    

Single-Tuned Hybrid Active Power Filter with Asymmetric Topology

Zhang Miao, Guan Yi-chuan, Feng Chun-shou, Wen Jun-ming, Wu Shi-yu   

  1. School of Automation, Guangdong University of Technology, Guangzhou 510006, China
  • Received:2022-09-13 Published:2023-09-26

Abstract: To address the harmonic pollution caused by nonlinear loads, a single-tuned hybrid active power filter (HAPF) with asymmetric topology is proposed, which consists of a three-phase voltage converter and a two-phase LC passive filter. By analyzing the operating principle and characteristics of the new topology, a filtering equivalent circuit is designed. By analyzing the working principle and characteristics of the new topology, a filter equivalent circuit is constructed. The two-phase current with passive filter is used to construct the control quantity of asymmetric third-phase current, which can effectively suppress the three phase harmonic current of the power grid and control the DC-link voltage of the filter. The DC-link voltage is stabilized by Proportional Integral (PI). The topology circuit and control strategy are tested by conducting simulations and experiments, and the experimental results validate the feasibility of the proposed topology and control scheme.

Key words: active power filter, nonlinear loads, harmonic, asymmetric topology

CLC Number: 

  • TM761
[1] KALAIR A, ABAS N, KALAIR A R, et al. Review of harmonic analysis, modeling and mitigation techniques [J]. Renewable and Sustainable Energy Reviews, 2017, 78: 1152-1187.
[2] 王雪, 高云广, 吝伶艳, 等. 有源电力滤波器的研究现状与展望[J]. 电力系统保护与控制, 2019, 47(1): 177-186.
WANG X, GAO Y G, LIN L Y, et al. Research status and prospect of active power filter [J]. Power System Protection and Control, 2019, 47(1): 177-186.
[3] 张淼, 庞卓标, 郝雪冬, 等. 一种无变压器型并联混合有源电力滤波器研究[J]. 广东工业大学学报, 2019, 36(5): 33-37.
ZHANG M, PANG Z B, HAO X D, et al. A research on a transformerless parallel hybrid active power filter [J]. Journal of Guangdong University of Technology, 2019, 36(5): 33-37.
[4] 李双健, 杜夏冰, 贾秀芳, 等. 一种应用于LCC高压直流输电的级联H桥混合型有源滤波器[J]. 电网技术, 2021, 45(4): 1409-1416.
LI S J, DU X B, JIA X F, et al. A cascaded H-bridge hybrid active power filter applied to LCC-HVDC [J]. Power System Technology, 2021, 45(4): 1409-1416.
[5] LI D, WANG T, PAN W, et al. A comprehensive review of improving power quality using active power filters [J]. Electric Power Systems Research, 2021, 199(3): 107389.
[6] TAREEN W U, MEKHILEF S, SEYEDMAHMOUDIAN M, et al. Active power filter (APF) for mitigation of power quality issues in grid integration of wind and photovoltaic energy conversion system [J]. Renewable and Sustainable Energy Reviews, 2017, 70: 635-655.
[7] 施大发, 吴传平. 基于两相三线制变流器的高速铁路负序和谐波综合补偿新方法[J]. 电工技术学报, 2012, 27(7): 257-266.
SHI D F, WU C P. A novel integrated compensation method of negative sequence and harmonic for high-speed railway based on two-phase three-wire converter [J]. Transactions of China Electrotechnical Society, 2012, 27(7): 257-266.
[8] 夏焰坤. 基于两相三线制变流器的高速铁路新型同相供电系统仿真计算[J]. 铁道学报, 2018, 40(8): 68-72.
XIA Y K. Simulative calculation of novel cophase power supply system based on two-phase three wire converter for high-speed railway [J]. Journal of the China Railway Society, 2018, 40(8): 68-72.
[9] 郭亚男, 孟庆达, 刘培忠, 等. 三相四开关并联型有源电力滤波器选择性谐波补偿方法[J]. 电力电容器与无功补偿, 2018, 39(3): 5-10.
GUO Y N, MENG Q D, LIU P Z, et al. Selective harmonic compensation method for three-phase four-switch SAPF [J]. Power Capacitor & Reactive Power Compensation, 2018, 39(3): 5-10.
[10] LUO Z, SU M, SUN Y, et al. Analysis and control of a reduced switch hybrid active power filter [J]. IET Power Electronics, 2016, 9(7): 1416-1425.
[11] TAREEN W K, MEKHIELF S. Three-phase transformerless shunt active power filter with reduced switch count for harmonic compensation in grid-connected applications [J]. IEEE Transactions on Power Electronics, 2018, 33(2): 4868-4881.
[12] 牛庆, 邵蕾, 蔡华洵, 等. 基于微网有源滤波装置谐波检测与抑制的研究[J]. 智慧电力, 2020, 48(12): 46-50.
NIU Q, SHAO L, CAI H X, et al. Harmonic detection and suppression of active filter device based on microgrid [J]. Smart Power, 2020, 48(12): 46-50.
[13] 何克成, 温润, 李璐, 等. 改进型并联混合有源滤波器设计研究[J]. 实验室研究与探索, 2021, 40(11): 94-100.
HE K C, WEN R, LI L, et al. Research on the design of improved shunt hybrid active power filter [J]. Research and Exploration in Laboratory, 2021, 40(11): 94-100.
[14] 时晓洁, 王智强, 张军明, 等. 单调谐并联混合有源电力滤波器控制策略研究[J]. 电机与控制学报, 2012, 16(4): 64-71.
SHI X J, WANG Z Q, ZHANG J M, et al. Study on the control strategy for single-tuned hybrid active power filters [J]. Electric Machines and Control, 2012, 16(4): 64-71.
[15] 古超帆, 张新燕, 童涛, 等. 基于二阶广义积分器的改进型ip-iq谐波检测算法[J]. 电测与仪表, 2020, 57(10): 88-93.
GU C F, ZHANG X Y, TONG T, et al. An improved ip-iq harmonic detection algorithm based on second-order generalized integrator [J]. Electrical Measurement and Instrumentation, 2020, 57(10): 88-93.
[1] Wang Jiang-qi, Zhang Miao, Li Yue, Su Teng. An Asymmetric Topology of Three-phase Active Power Filter [J]. Journal of Guangdong University of Technology, 2023, 40(01): 100-106.
[2] Zhang Miao, Wu Shi-yu, Wen Jun-ming, Feng Chun-shou, Guan Yi-chuan. Active Disturbance Rejection Controller Strategy for Shunt Hybrid Active Power Filters [J]. Journal of Guangdong University of Technology, 2022, 39(06): 62-67.
[3] Zhang Miao, Pang Zhuo-biao, Hao Xue-dong, Xie Si-wei, Zhang Xing-wang. A Research on a Transformerless Parallel Hybrid Active Power Filter [J]. Journal of Guangdong University of Technology, 2019, 36(05): 33-37.
[4] ZHANG Miao, SU Xie-fei. Research on Proportional-Resonant Controller and Harmonic Compensation for Grid-Connected Inverter [J]. Journal of Guangdong University of Technology, 2016, 33(05): 59-64.
[5] TANG Xiong-Min, DU Fang-Zhou, CHEN Si-Zhe. Research on a New Implementation Method for Single-Phase Shunt Active Power Filter [J]. Journal of Guangdong University of Technology, 2016, 33(03): 11-18.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!