A composite passive damping method of the LLCL-filter based grid-tied inverter

Power Electronics for Distributed Generation Systems(2012)

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摘要
This paper investigates the maximum and the minimum gain of the proportional resonant based grid current controller for a grid-tied inverter with a passive damped high-order power filter. It is found that the choice of the controller gain is limited to the local maximum amplitude determined by Q-factor around the characteristic frequency of the filter and grid impedance. To obtain the Q-factor of a high-order system, an equivalent circuit analysis method is proposed and illustrated through several classical passive damped LCL- and LLCL-filters. It is shown that both the RC parallel damper that is in parallel with the capacitor of the LCL-filter or with the Lf-Cf resonant circuit of the LLCL-filter, and the RL series damper in series with the grid-side inductor have their own application limits. Thus, a composite passive damped LLCL-filter for the grid-tied inverter is proposed, which can effectively suppress the possible resonance in case that the grid impedance varies in a wide range. Simulation results are good agreement with the theoretical analysis.
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grid-tied inverter,q-factor,compositie,proportional control,grid-tied,controller gain,passive damped llcl-filters,llcl-filter,equivalent circuit analysis method,theoretical analysis,passive damping,local maximum amplitude,power filters,grid impedance,electric current control,composite passive damping method,lf-cf resonant circuit,rl series damper,passive damped high-order power filter,grid-side inductor,power grids,resonance,rc parallel damper,invertors,llcl-filter based grid-tied inverter,proportional resonant based grid current controller,filter characteristic frequency,inductors,passive damped lcl-filters,resistors,damping,q factor,gain
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