This work presents an improved dead-beat predictive current controller for grid-tie inverters that addresses issues related to implementation delays. The total delay is composed of the integer computational delay and a fractional delay, which is taken into account in the design of the controller algorithm, to improve its performance and robustness. The control strategy, based on a model that includes these delays, employs state feedback and a prediction observer in order to obtain a true two-sample ripple free dead-beat response. System robustness can be adjusted with an appropriate selection of the location of the observer poles, at the expense of reducing control bandwidth. The proposed control scheme is both simple and computationally ef...
Inverters play a central role in modern society including renewable energy integration and motor dri...
A predictive current control strategy can realize flexible regulation of three-phase grid-tied conve...
In this article, an improved deadbeat control algorithm suitable for digital signal processor-based ...
This paper presents an adaptive robust predictive current control (RPCC) for grid-connected three-ph...
This work proposes a linear generalized predictive current control (GPCC) for grid-connected voltage...
Model predictive control is a new alternative in the control of power converters. The practical appl...
In this paper, the delay problem of a deadbeat current control for a single-phase PWM inverter conne...
This paper proposes a robust predictive current controller based on a disturbance estimator for a th...
Performance of any digital control scheme applied to inverters, or any other power electronic struct...
The stability of PWM rectifiers with a deadbeat current controller is seriously influenced by comput...
This study presents a new software-based plug-in dead-time compensator for grid-connected pulsewidth...
Current control in inverter-driven machine systems is the inner most component of the hierarchy of c...
Abstract The control of grid‐connected inverters is recently executed with digital microprocessors d...
The control of voltage source converters (VSCs) is now implemented on digital microprocessors. This ...
Distributed energy resources are often connected to low-voltage distribution networks where the grid...
Inverters play a central role in modern society including renewable energy integration and motor dri...
A predictive current control strategy can realize flexible regulation of three-phase grid-tied conve...
In this article, an improved deadbeat control algorithm suitable for digital signal processor-based ...
This paper presents an adaptive robust predictive current control (RPCC) for grid-connected three-ph...
This work proposes a linear generalized predictive current control (GPCC) for grid-connected voltage...
Model predictive control is a new alternative in the control of power converters. The practical appl...
In this paper, the delay problem of a deadbeat current control for a single-phase PWM inverter conne...
This paper proposes a robust predictive current controller based on a disturbance estimator for a th...
Performance of any digital control scheme applied to inverters, or any other power electronic struct...
The stability of PWM rectifiers with a deadbeat current controller is seriously influenced by comput...
This study presents a new software-based plug-in dead-time compensator for grid-connected pulsewidth...
Current control in inverter-driven machine systems is the inner most component of the hierarchy of c...
Abstract The control of grid‐connected inverters is recently executed with digital microprocessors d...
The control of voltage source converters (VSCs) is now implemented on digital microprocessors. This ...
Distributed energy resources are often connected to low-voltage distribution networks where the grid...
Inverters play a central role in modern society including renewable energy integration and motor dri...
A predictive current control strategy can realize flexible regulation of three-phase grid-tied conve...
In this article, an improved deadbeat control algorithm suitable for digital signal processor-based ...