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Translated title of the contribution: Grid Voltage Estimation Scheme without Phase Delay in Voltage-sensorlessControl of a Grid-connected Inverter

Research output: Contribution to journalArticlepeer-review

Abstract

This study proposes a grid voltage estimation scheme without a phase delay in the voltage-sensorless control of a grid-connected inverter to enhance its economic feasibility, such as manufacturing cost and system complexity. The proposed scheme estimates grid voltages using a disturbance observer (DOB)-based current controller to control the grid-connected inverter without grid-side voltage sensors. The proposed voltage-sensorless control scheme can be applied successfully to grid-connected inverters, which should be operated with synchronization to the grid, considering the phase angle of the grid can be effectively detected through estimating the grid voltages by DOB. However, a problem associated with the phase delay in estimated grid voltages remains because the DOB has dynamic behavior similar to low-pass filter. Hence, the estimated grid voltages are compensated by a phase lead compensator to overcome the limitation. The effectiveness of the proposed control and estimation schemes is proven through simulations and experiments using a 2 ㎸A prototype inverter.
Translated title of the contributionGrid Voltage Estimation Scheme without Phase Delay in Voltage-sensorlessControl of a Grid-connected Inverter
Original languageKorean
Pages (from-to)89-93
Number of pages5
Journal전력전자학회 논문지
Volume22
Issue number1
DOIs
StatePublished - Feb 2017

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