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Erschienen in: Electrical Engineering 3/2018

05.03.2018 | Original Paper

Improved adaptive notch filter-based active damping method for shunt active power filter with LCL-filter

verfasst von: Mehmet Büyük, Adnan Tan, Mehmet Tümay

Erschienen in: Electrical Engineering | Ausgabe 3/2018

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Abstract

The LCL-filter has been recently used with grid-connected converters to mitigate switching ripple harmonics. The LCL-filter presents a better attenuation performance for switching ripple harmonics in comparison with L- and LC-type filters. However, the application of LCL-filter has two basic constraints on the circuit design and the resonance problem. These constraints can be effortlessly overcome for grid-connected converters which operate on the utility fundamental frequency. On the other hand, these constraints become a challenging issue when the LCL-filter is used with shunt active power filter (SAPF) because of the wide operation frequency bandwidth of SAPF. This wide operation bandwidth of SAPF causes a narrow bandwidth for the selection of LCL-filter cutoff frequency and the resonance damping control. In this paper, the application constraints of LCL-filter are discussed and the LCL-filter design is provided for SAPF. In addition, an adaptive notch filter-based single-loop active damping method is developed considering the wide operation bandwidth of SAPF. The proposed method consists of a grid impedance estimation algorithm in order to update notch filter parameters adaptively against grid impedance variations. By the help of the single-loop active damping strategy, the proposed controller does not require any additional sensor for the current measurement of LCL-filter capacitor to damp resonance currents. The stability analysis of proposed controller is performed through pole–zero maps. The proposed method is tested, and its performance is verified with comprehensive case studies of a 400-V 80-kVA SAPF simulation model through MATLAB/Simulink.

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Literatur
1.
Zurück zum Zitat Angulo M, Ruiz-Caballero DA, Lago J, Heldwein ML, Mussa SA (2013) Active power filter control strategy with implicit closed-loop current control and resonant controller. IEEE Trans Ind Electron 60:2721–2730CrossRef Angulo M, Ruiz-Caballero DA, Lago J, Heldwein ML, Mussa SA (2013) Active power filter control strategy with implicit closed-loop current control and resonant controller. IEEE Trans Ind Electron 60:2721–2730CrossRef
2.
Zurück zum Zitat Qian L, Li P, Yong K, Shiying T, Deliang W, Yu Q (2014) A novel design and optimization method of an LCL filter for a shunt active power filter. IEEE Trans Ind Electron 61:4000–4010 Qian L, Li P, Yong K, Shiying T, Deliang W, Yu Q (2014) A novel design and optimization method of an LCL filter for a shunt active power filter. IEEE Trans Ind Electron 61:4000–4010
3.
Zurück zum Zitat Büyük M, Tan A, Tümay M, Bayındır KÇ (2016) Topologies, generalized designs, passive and active damping methods of switching ripple filters for voltage source inverter: a comprehensive review. Renew Sustain Energy Rev 62:46–69CrossRef Büyük M, Tan A, Tümay M, Bayındır KÇ (2016) Topologies, generalized designs, passive and active damping methods of switching ripple filters for voltage source inverter: a comprehensive review. Renew Sustain Energy Rev 62:46–69CrossRef
4.
Zurück zum Zitat Tang Y, Loh PC, Wang P, Choo FH, Gao F, Blaabjerg F (2012) Generalized design of high performance shunt active power filter with output LCL filter. IEEE Trans Ind Electron 59:1443–1452CrossRef Tang Y, Loh PC, Wang P, Choo FH, Gao F, Blaabjerg F (2012) Generalized design of high performance shunt active power filter with output LCL filter. IEEE Trans Ind Electron 59:1443–1452CrossRef
5.
Zurück zum Zitat ZhiXiang Z, Zheng W, Ming C (2014) Modeling, analysis and design of multifunction grid-interfaced inverters with output LCL filter. IEEE Trans Power Electron 29:3830–3839CrossRef ZhiXiang Z, Zheng W, Ming C (2014) Modeling, analysis and design of multifunction grid-interfaced inverters with output LCL filter. IEEE Trans Power Electron 29:3830–3839CrossRef
6.
Zurück zum Zitat Jalili K, Bernet S (2009) Design of LCL filters of active-front-end two-level voltage-source converters. IEEE Trans Ind Electron 56:1674–1689CrossRef Jalili K, Bernet S (2009) Design of LCL filters of active-front-end two-level voltage-source converters. IEEE Trans Ind Electron 56:1674–1689CrossRef
7.
Zurück zum Zitat Bina MT, Pashajavid E (2009) An efficient procedure to design passive LCL-filters for active power filters. Electr Power Syst Res 79:606–614CrossRef Bina MT, Pashajavid E (2009) An efficient procedure to design passive LCL-filters for active power filters. Electr Power Syst Res 79:606–614CrossRef
8.
Zurück zum Zitat Liu Q, Peng L, Kang Y, Tang SY, Wu DL, Qi Y (2014) A novel design and optimization method of an LCL filter for a shunt active power filter. IEEE Trans Ind Electron 61:4000–4010CrossRef Liu Q, Peng L, Kang Y, Tang SY, Wu DL, Qi Y (2014) A novel design and optimization method of an LCL filter for a shunt active power filter. IEEE Trans Ind Electron 61:4000–4010CrossRef
9.
Zurück zum Zitat Balasubramanian AK, John V (2013) Analysis and design of split-capacitor resistive inductive passive damping for LCL filters in grid-connected inverters. IET Power Electron 6:1822–1832CrossRef Balasubramanian AK, John V (2013) Analysis and design of split-capacitor resistive inductive passive damping for LCL filters in grid-connected inverters. IET Power Electron 6:1822–1832CrossRef
10.
Zurück zum Zitat Liserre M, Blaabjerg F, Hansen S (2005) Design and control of an LCL-filter-based three-phase active rectifier. IEEE Trans Ind Appl 41:1281–1291CrossRef Liserre M, Blaabjerg F, Hansen S (2005) Design and control of an LCL-filter-based three-phase active rectifier. IEEE Trans Ind Appl 41:1281–1291CrossRef
11.
Zurück zum Zitat Guo XQ, Wu WY, Gu HR (2010) Modeling and simulation of direct output current control for LCL-interfaced grid-connected inverters with parallel passive damping. Simul Model Pract Theory 18:946–956CrossRef Guo XQ, Wu WY, Gu HR (2010) Modeling and simulation of direct output current control for LCL-interfaced grid-connected inverters with parallel passive damping. Simul Model Pract Theory 18:946–956CrossRef
12.
Zurück zum Zitat Sedo J, Kascak S (2017) Design of output LCL filter and control of single-phase inverter for grid-connected system. Electr Eng 99:1217–1232CrossRef Sedo J, Kascak S (2017) Design of output LCL filter and control of single-phase inverter for grid-connected system. Electr Eng 99:1217–1232CrossRef
13.
Zurück zum Zitat Jinming X, Shaojun X, Ting T (2014) Active damping-based control for grid-connected LCL filtered inverter with injected grid current feedback only. IEEE Trans Ind Electron 61:4746–4758CrossRef Jinming X, Shaojun X, Ting T (2014) Active damping-based control for grid-connected LCL filtered inverter with injected grid current feedback only. IEEE Trans Ind Electron 61:4746–4758CrossRef
14.
Zurück zum Zitat Donghua P, Xinbo R, Chenlei B, Weiwei L, Xuehua W (2014) Capacitor-current-feedback active damping with reduced computation delay for improving robustness of LCL-type grid-connected inverter. IEEE Trans Power Electron 29:3414–3427CrossRef Donghua P, Xinbo R, Chenlei B, Weiwei L, Xuehua W (2014) Capacitor-current-feedback active damping with reduced computation delay for improving robustness of LCL-type grid-connected inverter. IEEE Trans Power Electron 29:3414–3427CrossRef
15.
Zurück zum Zitat Hu G, Chen C, Shanxu D (2013) New active damping strategy for LCL-filter-based grid-connected inverters with harmonics compensation. J Power Electron 13:287–295CrossRef Hu G, Chen C, Shanxu D (2013) New active damping strategy for LCL-filter-based grid-connected inverters with harmonics compensation. J Power Electron 13:287–295CrossRef
16.
Zurück zum Zitat Yao W, Yang Y, Zhang X, Blaabjerg F, Loh P (2016) Design and analysis of robust active damping for LCL filters using digital notch filters. IEEE Trans Power Electron PP:1–1 Yao W, Yang Y, Zhang X, Blaabjerg F, Loh P (2016) Design and analysis of robust active damping for LCL filters using digital notch filters. IEEE Trans Power Electron PP:1–1
17.
Zurück zum Zitat Dannehl J, Liserre M, Fuchs FW (2011) Filter-based active damping of voltage source converters with LCL filter. IEEE Trans Ind Electron 58:3623–3633CrossRef Dannehl J, Liserre M, Fuchs FW (2011) Filter-based active damping of voltage source converters with LCL filter. IEEE Trans Ind Electron 58:3623–3633CrossRef
18.
Zurück zum Zitat Liu C, Dai K, Duan K, Kang Y (2013) Application of a C-type filter based LCFL output filter to shunt active power filters. J Power Electron 13:1058–1069CrossRef Liu C, Dai K, Duan K, Kang Y (2013) Application of a C-type filter based LCFL output filter to shunt active power filters. J Power Electron 13:1058–1069CrossRef
19.
Zurück zum Zitat Tang Y, Loh PC, Wang P, Choo FH, Gao F, Blaabjerg F (2011) Design, control, and implementation of LCL-filter-based shunt active power filters. In: 2011 Twenty-sixth annual Ieee applied power electronics conference and exposition (APEC), pp 98–105 Tang Y, Loh PC, Wang P, Choo FH, Gao F, Blaabjerg F (2011) Design, control, and implementation of LCL-filter-based shunt active power filters. In: 2011 Twenty-sixth annual Ieee applied power electronics conference and exposition (APEC), pp 98–105
20.
Zurück zum Zitat Zhao WQ, Li YL, Chen GZ (2009) A double-loop current control strategy for shunt active power filter with LCL filter. In: 2009 IEEE international symposium on industrial electronics, pp 1824–1828 Zhao WQ, Li YL, Chen GZ (2009) A double-loop current control strategy for shunt active power filter with LCL filter. In: 2009 IEEE international symposium on industrial electronics, pp 1824–1828
21.
Zurück zum Zitat Li JJ, Zhao ZM, Ge JJ, Yuan LQ, Lu T (2013) Implementation of a novel source current detection control strategy for LCL filter-based shunt active power filter. In: 2013 International conference on electrical machines and systems (ICEMS), pp 1624–1629 Li JJ, Zhao ZM, Ge JJ, Yuan LQ, Lu T (2013) Implementation of a novel source current detection control strategy for LCL filter-based shunt active power filter. In: 2013 International conference on electrical machines and systems (ICEMS), pp 1624–1629
22.
Zurück zum Zitat Routimo M, Tuusa H (2007) LCL type supply filter for active power filter—comparison of an active and a passive method for resonance damping. In: IEEE power electronics specialists conference, 2007, pp 2939–2945 Routimo M, Tuusa H (2007) LCL type supply filter for active power filter—comparison of an active and a passive method for resonance damping. In: IEEE power electronics specialists conference, 2007, pp 2939–2945
23.
Zurück zum Zitat Büyük M, Tan A, Bayındır KÇ, Tümay M (2015) Analysis and comparison of passive damping methods for shunt active power filter with output LCL filter. In: IEEE international conference ACEMP-OPTIM-ELECTROMOTION side, TÜRKIYE, pp 434–440, 2–4 Büyük M, Tan A, Bayındır KÇ, Tümay M (2015) Analysis and comparison of passive damping methods for shunt active power filter with output LCL filter. In: IEEE international conference ACEMP-OPTIM-ELECTROMOTION side, TÜRKIYE, pp 434–440, 2–4
24.
Zurück zum Zitat İnci M, Bayındır KÇ, Tümay M (2016) Improved synchronous reference frame based controller method for multifunctional compensation. Electr Power Syst Res 141:500–509CrossRef İnci M, Bayındır KÇ, Tümay M (2016) Improved synchronous reference frame based controller method for multifunctional compensation. Electr Power Syst Res 141:500–509CrossRef
25.
Zurück zum Zitat Santos RM, Seixas PF, Cortizo PC, Torres LAB, Souza AF (2008) Comparison of three single-phase PLL algorithms for UPS applications. IEEE Trans Ind Electr 55:2923–2932CrossRef Santos RM, Seixas PF, Cortizo PC, Torres LAB, Souza AF (2008) Comparison of three single-phase PLL algorithms for UPS applications. IEEE Trans Ind Electr 55:2923–2932CrossRef
26.
Zurück zum Zitat Yang D, Ruan X, Wu H (2015) A real-time computation method with dual sampling mode to improve the current control performance of the LCL-type grid-connected inverter. IEEE Trans Ind Electr 62:4563–4572CrossRef Yang D, Ruan X, Wu H (2015) A real-time computation method with dual sampling mode to improve the current control performance of the LCL-type grid-connected inverter. IEEE Trans Ind Electr 62:4563–4572CrossRef
27.
Zurück zum Zitat Roberts MC (2012) Signals and systems: analysis using transform methods and MATLAB, vol 2. Raghothaman Srinivasan, Newyork Roberts MC (2012) Signals and systems: analysis using transform methods and MATLAB, vol 2. Raghothaman Srinivasan, Newyork
28.
Zurück zum Zitat Lyu Y, Lin H, Cui Y (2015) Stability analysis of digitally controlled LCL-type grid-connected inverter considering the delay effect. IET Power Electron 8:1651–1660CrossRef Lyu Y, Lin H, Cui Y (2015) Stability analysis of digitally controlled LCL-type grid-connected inverter considering the delay effect. IET Power Electron 8:1651–1660CrossRef
29.
Zurück zum Zitat Xin Z, Loh PC, Wang X, Blaabjerg F, Tang Y (2016) Highly accurate derivatives for LCL filtered grid converter with capacitor voltage active damping. IEEE Trans Power Electron 31:3612–3625CrossRef Xin Z, Loh PC, Wang X, Blaabjerg F, Tang Y (2016) Highly accurate derivatives for LCL filtered grid converter with capacitor voltage active damping. IEEE Trans Power Electron 31:3612–3625CrossRef
30.
Zurück zum Zitat Wang XH, Ruan XB, Bao CL, Pan DH, Xu L (2012) Design of the PI regulator and feedback coefficient of capacitor current for grid-connected inverter with an LCL filter in discrete-time domain. In: 2012 IEEE energy conversion congress and exposition (Ecce), pp 1657–1662 Wang XH, Ruan XB, Bao CL, Pan DH, Xu L (2012) Design of the PI regulator and feedback coefficient of capacitor current for grid-connected inverter with an LCL filter in discrete-time domain. In: 2012 IEEE energy conversion congress and exposition (Ecce), pp 1657–1662
31.
Zurück zum Zitat Xie C, Wang Y, Zhong XJ, Chen GZ (2012) A novel active damping method for LCL-filter-based shunt active power filter. In: 2012 IEEE international symposium on industrial electronics (ISIE), pp 64–69 Xie C, Wang Y, Zhong XJ, Chen GZ (2012) A novel active damping method for LCL-filter-based shunt active power filter. In: 2012 IEEE international symposium on industrial electronics (ISIE), pp 64–69
32.
Zurück zum Zitat Wenli Y, Yongheng Y, Xiaobin Z, Blaabjerg F (2015) Digital notch filter based active damping for LCL filters. In: Applied power electronics conference and exposition (APEC). IEEE, pp 2399–2406 Wenli Y, Yongheng Y, Xiaobin Z, Blaabjerg F (2015) Digital notch filter based active damping for LCL filters. In: Applied power electronics conference and exposition (APEC). IEEE, pp 2399–2406
33.
Zurück zum Zitat Carotenuto PL (2011) Grid impedance estimation in PV grid-connected systems through PQ variation methods. A Simulink-based approach. MSc Thesis, d’Enginyeria Electrònica, Universitat Politecnica de Catalunya, Escola Tècnica Superior d’Enginyeria de Telecomunicació, Barcelona Carotenuto PL (2011) Grid impedance estimation in PV grid-connected systems through PQ variation methods. A Simulink-based approach. MSc Thesis, d’Enginyeria Electrònica, Universitat Politecnica de Catalunya, Escola Tècnica Superior d’Enginyeria de Telecomunicació, Barcelona
Metadaten
Titel
Improved adaptive notch filter-based active damping method for shunt active power filter with LCL-filter
verfasst von
Mehmet Büyük
Adnan Tan
Mehmet Tümay
Publikationsdatum
05.03.2018
Verlag
Springer Berlin Heidelberg
Erschienen in
Electrical Engineering / Ausgabe 3/2018
Print ISSN: 0948-7921
Elektronische ISSN: 1432-0487
DOI
https://doi.org/10.1007/s00202-018-0685-9

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