Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Admittance Reshaping Control Methods to Mitigate the Interactions between Inverters and Grid

View through CrossRef
With the increasing impedance coupling between inverters and grid caused by the phase-locked loop (PLL), traditional three-phase inverters suffer from the harmonic distortion or instability problems under weak grid conditions. Therefore, the admittance reshaping control methods are proposed to mitigate the interactions between inverters and grid. Firstly, a dynamics model of traditional inverter output admittance including main circuit and PLL is developed in the direct-quadrature (dq) frame. And the qq channel impedance of the inverter presents as a negative incremental resistance with the PLL effect. Secondly, two admittance reshaping control methods are proposed to improve the system damping. The first reshaping technique uses the feedforward point of common coupling (PCC) voltage to modify the inverter output admittance. The second reshaping technique adopts the active damping controller to reconstruct the PLL equivalent admittance. The proposed control methods not only increase the system phase margin, but also ensure the system dynamic response speed. And the total harmonic distortion of steady-state grid-connected current is reduced to less than 2%. Furthermore, a specific design method of control parameters is depicted. Finally, experimental results are provided to prove the validity of the proposed control methods.
Title: Admittance Reshaping Control Methods to Mitigate the Interactions between Inverters and Grid
Description:
With the increasing impedance coupling between inverters and grid caused by the phase-locked loop (PLL), traditional three-phase inverters suffer from the harmonic distortion or instability problems under weak grid conditions.
Therefore, the admittance reshaping control methods are proposed to mitigate the interactions between inverters and grid.
Firstly, a dynamics model of traditional inverter output admittance including main circuit and PLL is developed in the direct-quadrature (dq) frame.
And the qq channel impedance of the inverter presents as a negative incremental resistance with the PLL effect.
Secondly, two admittance reshaping control methods are proposed to improve the system damping.
The first reshaping technique uses the feedforward point of common coupling (PCC) voltage to modify the inverter output admittance.
The second reshaping technique adopts the active damping controller to reconstruct the PLL equivalent admittance.
The proposed control methods not only increase the system phase margin, but also ensure the system dynamic response speed.
And the total harmonic distortion of steady-state grid-connected current is reduced to less than 2%.
Furthermore, a specific design method of control parameters is depicted.
Finally, experimental results are provided to prove the validity of the proposed control methods.

Related Results

Constantinople as 'New Rome'
Constantinople as 'New Rome'
<!--[if gte mso 9]><xml> <o:DocumentProperties> <o:Revision>0</o:Revision> <o:TotalTime>0</o:TotalTime> <o:Pages>1</o:Pages> &...
A CHINA E A TRANSIÇÃO SOCIALISTA – UM BREVE BOSQUEJO
A CHINA E A TRANSIÇÃO SOCIALISTA – UM BREVE BOSQUEJO
<!--[if gte mso 9]><xml> <o:DocumentProperties> <o:Revision>0</o:Revision> <o:TotalTime>0</o:TotalTime> <o:Pages>1</o:Pages> &...
Three Dimensional Simulations in Real Time for Personalized Drug Release Prosthesis Used in Lumbosacral Rehabilitation
Three Dimensional Simulations in Real Time for Personalized Drug Release Prosthesis Used in Lumbosacral Rehabilitation
This paper presents a theoretical method for simulation and three-dimensional reconstruction of the anatomical elements of the spine in order to achieve hydrogel disc prosthesis by...

Back to Top