For direct model predictive control with reference tracking of the converter current, we derive an efficient optimization algorithm that allows us to solve the control problem for very long prediction horizons. This is achieved by adapting sphere decoding principles to the underlying optimization problem. The proposed algorithm requires only few computations and directly provides the optimal switch positions. Our method is illustrated for the case of a variable speed drive system with a three-level voltage source converter. Since the computational burden of our algorithm is effectively independent of the number of converter output levels, the concept is particularly suitable for multi-level topologies with a large number of voltage levels.<...
Common approaches for direct model predictive control (MPC) for current reference tracking in power ...
Power electronics converters use switching elements to manipulate voltage and current waveforms. Thi...
In this paper we present a computationally efficient implementation of the sphere decoder, which is e...
For direct model predictive control with reference tracking of the converter current, we derive an e...
For direct model predictive control with reference tracking of the converter current, we derive an e...
For direct model predictive control with reference tracking of the converter current, we derive an e...
The performance of direct model predictive control (MPC) with reference tracking and long prediction...
The performance of direct model predictive control (MPC) with reference tracking and long prediction...
The performance of direct model predictive control (MPC) with reference tracking and long prediction...
Common approaches for direct model predictive control (MPC) for current reference tracking in power ...
Recently, an efficient multistep direct model predictive control (MPC) scheme for power converters h...
Recently, an efficient optimization strategy based on the sphere decoding algorithm (SDA) has been p...
Direct model predictive control (MPC) strategies that achieve long prediction horizons with a modest...
In this paper we present modifications in the sphere decoder initially introduced in [1] and modifie...
© 2017 IEEE. In this paper we present modifications in the sphere decoder initially introduced in [1...
Common approaches for direct model predictive control (MPC) for current reference tracking in power ...
Power electronics converters use switching elements to manipulate voltage and current waveforms. Thi...
In this paper we present a computationally efficient implementation of the sphere decoder, which is e...
For direct model predictive control with reference tracking of the converter current, we derive an e...
For direct model predictive control with reference tracking of the converter current, we derive an e...
For direct model predictive control with reference tracking of the converter current, we derive an e...
The performance of direct model predictive control (MPC) with reference tracking and long prediction...
The performance of direct model predictive control (MPC) with reference tracking and long prediction...
The performance of direct model predictive control (MPC) with reference tracking and long prediction...
Common approaches for direct model predictive control (MPC) for current reference tracking in power ...
Recently, an efficient multistep direct model predictive control (MPC) scheme for power converters h...
Recently, an efficient optimization strategy based on the sphere decoding algorithm (SDA) has been p...
Direct model predictive control (MPC) strategies that achieve long prediction horizons with a modest...
In this paper we present modifications in the sphere decoder initially introduced in [1] and modifie...
© 2017 IEEE. In this paper we present modifications in the sphere decoder initially introduced in [1...
Common approaches for direct model predictive control (MPC) for current reference tracking in power ...
Power electronics converters use switching elements to manipulate voltage and current waveforms. Thi...
In this paper we present a computationally efficient implementation of the sphere decoder, which is e...