DOE OSTI · 1908555
Current Observer Based Predictive Decoupled Power Control Grid-Interactive Inverter
Abstract
This paper presents a sensor-less current model predictive control (MPC) scheme via a full state observer based current estimator. The grid interactive inverters’ control schemes require current and voltage sensors. Elimination of current sensor enhances the inverter reliability. This paper leverages the inherent characteristics of MPC towards robust current sensor-less grid interactive inverter with LC filter. The observer for inductor current is developed based on the existing capacitor voltage measurement. The estimator dynamic state-space matrices are then obtained through reconstruction of the inverter model with the capacitor voltage and inductor current being the state variables. The controller objectives are to regulate active and reactive power in a decoupled manner. The theoretical expectation, controller performance, and accuracy of the current estimation are verified by conducting a real-time simulation via Typhoon HIL.
Keep this discovery
Explore connections, maps & timelines
Zhang, Zhen, Oluwafemi, Adepoju Webster, Hosseinzadehtaher, Mohsen, Shadmand, Mohammad B.. 2020-02-01. Current Observer Based Predictive Decoupled Power Control Grid-Interactive Inverter. https://doi.org/10.1109/tpec48276.2020.9042581
Cite the original work for its findings. Save a collection to share your selection of sources.