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      KCI등재 SCIE SCOPUS

      An Active Damping Scheme Based on a Second Order Resonant Integrator for LCL-Type Grid-Connected Converters

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      https://www.riss.kr/link?id=A103269547

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      다국어 초록 (Multilingual Abstract)

      This paper proposes a novel active damping scheme to suppress LCL-filter resonance with only grid-current feedback control in grid-connected voltage-source converters. The idea comes from the concept of the model reference adaptive control (MRAC). A d...

      This paper proposes a novel active damping scheme to suppress LCL-filter resonance with only grid-current feedback control in grid-connected voltage-source converters. The idea comes from the concept of the model reference adaptive control (MRAC). A detailed theoretical derivation is given, and the effectiveness of this method is explained based on its physical nature. According to the control structure of this method, the active damping compensator, which is essentially a second order resonant integrator (SORI) filter, provides an effective solution to damp LCL resonance and to eliminate the need for additional sensors. Compared with extra feedback methods, the cost and complexity are reduced. A straightforward tuning procedure for the active damping method has been presented. A stability analysis is illustrated in the discrete domain while considering a one-step delay. Finally, experimental results are presented to validate the analysis and to demonstrate the good performance of the proposed method.

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      목차 (Table of Contents)

      • Abstract
      • Ⅰ. INTRODUCTION
      • Ⅱ. MODELING AND STABILITY ANALYSIS OF THE SINGLE GRID CURRENT CONTROL LCL-TYPE GRID-CONNECTED CONVERTER
      • Ⅲ. PROPOSED ACTIVE DAMPING SCHEME BASED ON A SORI FILTER
      • Ⅳ. SYSTEMATIC DESIGN OF THE GRID CURRENT CONTROL LOOP
      • Abstract
      • Ⅰ. INTRODUCTION
      • Ⅱ. MODELING AND STABILITY ANALYSIS OF THE SINGLE GRID CURRENT CONTROL LCL-TYPE GRID-CONNECTED CONVERTER
      • Ⅲ. PROPOSED ACTIVE DAMPING SCHEME BASED ON A SORI FILTER
      • Ⅳ. SYSTEMATIC DESIGN OF THE GRID CURRENT CONTROL LOOP
      • Ⅴ. EXPERIMENTAL RESULTS
      • Ⅵ. CONCLUSION
      • REFERENCES
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      참고문헌 (Reference)

      1 X. Wang, "Virtual RC damping of LCL filtered voltage source converters with extended selective harmonic compensation" 62 (62): 1537-1547, 2015

      2 F. D. Freijedo, "Tuning of phase locked loops for power converters under distorted utility conditions" 45 (45): 2039-2047, 2009

      3 C. Chen, "Time Delay Compensation Method Based on Area Equivalence For Active Damping of an LCL-Type Converter" 32 (32): 762-772, 2017

      4 R. Pena Alzola, "Systematic design of the lead-lag network method for active damping in lcl-filter based three phase converters" 10 (10): 43-52, 2014

      5 C. Bao, "Step-by-step controller design for LCL-type grid-connected inverter with capacitor-current-feedback active-damping" 29 (29): 1239-1253, 2014

      6 X. Yuan, "Stationary-frame generalized integrators for current control of active power filters with zero steady-state error for current harmonics of concern under unbalanced and distorted operating conditions" 38 (38): 523-532, 2002

      7 M. Liserre, "Stability of photovoltaic and wind turbine grid-connected inverters for a large set of grid impedance values" 21 (21): 263-272, 2006

      8 J. Yin, "Stability analysis of grid-connected inverter with LCL filter adopting a digital single-loop controller with inherent damping characteristic" 9 (9): 1104-1112, 2013

      9 Z. Xin, "SOGI-Based Capacitor Voltage Feedback Active Damping in LCL-Filtered Grid Converters" 2015

      10 S. G. Parker, "Regions of active damping control for LCL filters" 50 (50): 424-432, 2014

      1 X. Wang, "Virtual RC damping of LCL filtered voltage source converters with extended selective harmonic compensation" 62 (62): 1537-1547, 2015

      2 F. D. Freijedo, "Tuning of phase locked loops for power converters under distorted utility conditions" 45 (45): 2039-2047, 2009

      3 C. Chen, "Time Delay Compensation Method Based on Area Equivalence For Active Damping of an LCL-Type Converter" 32 (32): 762-772, 2017

      4 R. Pena Alzola, "Systematic design of the lead-lag network method for active damping in lcl-filter based three phase converters" 10 (10): 43-52, 2014

      5 C. Bao, "Step-by-step controller design for LCL-type grid-connected inverter with capacitor-current-feedback active-damping" 29 (29): 1239-1253, 2014

      6 X. Yuan, "Stationary-frame generalized integrators for current control of active power filters with zero steady-state error for current harmonics of concern under unbalanced and distorted operating conditions" 38 (38): 523-532, 2002

      7 M. Liserre, "Stability of photovoltaic and wind turbine grid-connected inverters for a large set of grid impedance values" 21 (21): 263-272, 2006

      8 J. Yin, "Stability analysis of grid-connected inverter with LCL filter adopting a digital single-loop controller with inherent damping characteristic" 9 (9): 1104-1112, 2013

      9 Z. Xin, "SOGI-Based Capacitor Voltage Feedback Active Damping in LCL-Filtered Grid Converters" 2015

      10 S. G. Parker, "Regions of active damping control for LCL filters" 50 (50): 424-432, 2014

      11 J. Dannehl, "PI state space current control of grid-connected PWM converters with LCL filters" 25 (25): 2320-2330, 2010

      12 D. G. Holmes, "Optimized design of stationary frame three phase AC Current regulators" 24 (24): 2417-2426, 2009

      13 D. Pan, "Optimized Controller Design for LCL-Type Grid-Connected Inverter to Achieve High Robustness against Grid-Impedance Variation" 62 (62): 1537-1547, 2015

      14 P. Rodriguez, "New positive-sequence voltage detector for grid synchronization of power converters under faulty grid conditions" 1-7, 2006

      15 P. Rodriguez, "Multiresonant frequency-locked loop for grid synchronization of power converters under distorted grid conditions" 58 (58): 127-138, 2011

      16 J. L. Agorreta, "Modeling and control of N-paralleled grid-connected inverters with LCL filter coupled due to grid impedance in PV plants" 26 (26): 770-785, 2011

      17 J. Dannehl, "Limitations of voltage-oriented PI current control of grid-connected PWM rectifiers with LCL filters" 56 (56): 380-388, 2009

      18 Y. Tang, "Generalized design of high performance shunt active power filter with output LCL filter" 59 (59): 1443-1452, 2012

      19 Y. Tang, "Exploring inherent damping characteristic of LCL-filters for three-phase grid-connected voltage source inverters" 27 (27): 1433-1443, 2012

      20 S. Golestan, "Design-oriented study of advanced synchronous reference frame phase-locked loops" 28 (28): 765-778, 2013

      21 I. J. Gabe, "Design and implementation of a robust current controller for VSI connected to the grid through an LCL filter" 24 (24): 1444-1452, 2009

      22 M. Liserre, "Design and control of an LCL filter-based three-phase active rectifier" 41 (41): 1281-1291, 2005

      23 M. Lindgren, "Control of a voltage-source converter connected to the grid through an LCL-filter-application to active filtering" 1 : 229-235, 1998

      24 R. Pena-Alzola, "Analysis of the passive damping losses in LCL-filter based grid converters" 28 (28): 2642-2646, 2013

      25 G. Shen, "An improved control strategy for grid-connected voltage source inverters with a LCL filter" 43 (43): 1899-1906, 2008

      26 P. Rodriguez, "Advanced grid synchronization system for power converters under unbalanced and distorted operating conditions" 5173-5178, 2006

      27 J. R. Massing, "Adaptive current control for grid-connected converters with LCL filter" 59 (59): 4681-4693, 2012

      28 A. Ghoshal, "Active damping of LCL filter at low switching to resonance frequency ratio" 8 : 574-582, 2015

      29 M. Ciobotaru, "Accurate and less-disturbing active antiislanding method based on PLL for gridconnected converters" 25 (25): 1576-1584, 2010

      30 P. Rodriguez, "A stationary reference frame grid synchronization system for three-phase grid-connected power converters under adverse grid conditions" 27 (27): 99-112, 2012

      31 D. Yang, "A real-time computation method with dual sampling modes to improve the current control performance of the LCL-type grid-connected inverter" 62 (62): 4563-4572, 2015

      32 G. Fedele, "A power electrical signal tracking strategy based on the modulating functions method" 56 (56): 4079-4087, 2009

      33 M. Ciobotaru, "A new single-phase PLL structure based on second order generalized integrator" 1-6, 2006

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      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.83 0.54 0.74
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.65 0.62 0.382 0.06
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