
CLC number: TM46
On-line Access: 2024-08-27
Received: 2023-10-17
Revision Accepted: 2024-05-08
Crosschecked: 2018-09-09
Cited: 0
Clicked: 10601
Qun-wei Xu, Jin-xiang Zhan, Long Xiao, Guo-zhu Chen. A multi-modular shunt active power filter system and its novel fault-tolerant strategy based on split-phase control and real-time bus communication[J]. Frontiers of Information Technology & Electronic Engineering,in press.https://doi.org/10.1631/FITEE.1601296 @article{title="A multi-modular shunt active power filter system and its novel fault-tolerant strategy based on split-phase control and real-time bus communication", %0 Journal Article TY - JOUR
多模块并联有源电力滤波器系统及其基于分相控制和实时总线通讯的新型容错控制策略关键词组: Darkslateblue:Affiliate; Royal Blue:Author; Turquoise:Article
Reference[1]Akagi H, 2005. Active harmonic filters. Proc IEEE, 93(12): 2128-2141. ![]() [2]Bhattacharya A, Chakraborty C, Bhattacharya S, 2012. Parallel-connected shunt hybrid active power filters operating at different switching frequencies for improved performance. IEEE Trans Ind Electron, 59(11):4007-4019. ![]() [3]Chen Z, Luo YP, Chen M, 2012. Control and performance of a cascaded shunt active power filter for aircraft electric power system. IEEE Trans Ind Electron, 59(9):3614-3623. ![]() [4]Errabelli RR, Mutschler P, 2012. Fault-tolerant voltage source inverter for permanent magnet drives. IEEE Trans Power Electron, 27(2):500-508. ![]() [5]Gou B, Ge XL, Liu YC, et al., 2016. Load-current-based current sensor fault diagnosis and tolerant control scheme for traction inverters. Electron Lett, 52(20):1717-1719. ![]() [6]Guzman R, de Vicuna LG, Morales J, et al., 2016. Model-based control for a three-phase shunt active power filter. IEEE Trans Ind Electron, 63(7):3998-4007. ![]() [7]Karimi S, Poure P, Saadate S, 2009. Fast power switch failure detection for fault tolerant voltage source inverters using FPGA. IET Power Electron, 2(4):346-354. ![]() [8]Khadem SK, Basu M, Conlon MF, 2014. Harmonic power compensation capacity of shunt active power filter and its relationship with design parameters. IET Power Electron, 7(2):418-430. ![]() [9]Lee TL, Wang YC, Li JC, et al., 2015. Hybrid active filter with variable conductance for harmonic resonance suppression in industrial power systems. IEEE Trans Ind Electron, 62(2):746-756. ![]() [10]Lim PY, Azli NA, 2007. A modular structured multilevel inverter active power filter with unified constant-frequency integration control for nonlinear AC loads. 7th Int Conf on Power Electronics and Drive Systems, p.244-248. ![]() [11]Liu TF, Jiang ZP, 2015. A small-gain approach to robust event-triggered control of nonlinear systems. IEEE Trans Autom Contr, 60(8):2072-2085. ![]() [12]Naidu M, Gopalakrishnan S, Nehl TW, 2010. Fault tolerant permanent magnet motor drive topologies for automotive x-by-wire systems. IEEE Trans Ind Appl, 46(2):841-848. ![]() [13]Olm JM, Ramos GA, Costa-Castello R, 2011. Stability analysis of digital repetitive control systems under time-varying sampling period. IET Contr Theory Appl, 5(1): 29-37. ![]() [14]Ramos GA, Costa-Castello R, 2012. Power factor correction and harmonic compensation using second-order odd-harmonic repetitive control. IET Contr Theory Appl, 6(11):1633-1644. ![]() [15]Sjolte J, Tjensvoll G, Molinas M, 2014. Reliability analysis of IGBT inverter for wave energy converter with focus on thermal cycling. 9th Int Conf on Ecological Vehicles and Renewable Energies, p.1-7. ![]() [16]Sun BG, Xie YX, Ma H, 2015. An enhanced repetitive control strategy for shunt active power filter with LCL output filter. 41st Annual Conf of the IEEE Industrial Electronics Society, p.1351-1356. ![]() [17]Wang YF, Xu QW, Chen GZ, 2015. Simplified multi-modular shunt active power filter system and its modelling. IET Power Electron, 8(6):967-976. ![]() [18]Xu JM, Xie SJ, Tang T, 2014. Improved control strategy with grid-voltage feedforward for LCL-filter-based inverter connected to weak grid. IET Power Electron, 7(10): 2660-2671. ![]() [19]Zhang QM, Liu HJ, Chen HK, et al., 2008. A precise and adaptive algorithm for interharmonics measurement based on iterative DFT. IEEE Trans Power Del, 23(4): 1728-1735. ![]() [20]Zhou DH, Zhao J, Liu Y, 2016. Independent control scheme for nonredundant two-leg fault-tolerant back-to-back converter-fed induction motor drives. IEEE Trans Ind Electron, 63(11):6790-6800. ![]() Journal of Zhejiang University-SCIENCE, 38 Zheda Road, Hangzhou
310027, China
Tel: +86-571-87952783; E-mail: cjzhang@zju.edu.cn Copyright © 2000 - 2026 Journal of Zhejiang University-SCIENCE | ||||||||||||||


ORCID:
Open peer comments: Debate/Discuss/Question/Opinion
<1>