[Oral Presentation]Active Damping by Digital Control Delay to Stabilize Grid-Tied Inverter with LCL Filter

Active Damping by Digital Control Delay to Stabilize Grid-Tied Inverter with LCL Filter
ID:56 Submission ID:66 View Protection:ATTENDEE Updated Time:2020-10-15 15:38:07 Hits:276 Oral Presentation

Start Time:2020-11-02 09:45 (Asia/Shanghai)

Duration:15min

Session:[B] Power Electronics Technology and Application » [B2] Session 13 and Session 18

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Abstract
LCL filter is commonly adopted in grid-tied inverters to eliminate harmonics produced by the pulse width modulation (PWM), because of its superior attenuation ability. However, it introduces potential resonance that is especially critical when connected to a weak grid with grid impedance varying. Practically, the active damping methods are popular in stabilizing the inverter system due to their flexibility and power loss-less, compared to passive ones. Active methods are mostly implemented with additional digital filters, power converters, control loops or/and sensors, complicating the system and increasing the costs. This paper provides an active damping method based on digital control delay (DCD) to ensure the stability of LCL-filtered inverters under the stiff or weak grid conditions. It is implemented with tuning the DCD to a proper region, which can be easily determined by method proposed in this paper. Finally, damping method is verified by simulation results in MATLAB/Simulink.
Keywords
Active damping, grid-tied inverter, digital control delay, LCL filter, weak grid
Speaker
兵圆 杨
华中科技大学

Submission Author
兵圆 杨 华中科技大学
珂 戴 华中科技大学
子薇 戴 Rensselaer Polytechnic Institute
非 潘 上海追日电气有限公司
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