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Journal ArticleDOI

Predictive Torque Control of Induction Machines Based on State-Space Models

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TLDR
A predictive control algorithm that uses a state-space model of an induction machine with time-varying components improving the accuracy of state prediction and a high degree of flexibility is obtained with the proposed control technique due to the online optimization algorithm.
Abstract
In this paper, we present a predictive control algorithm that uses a state-space model. Based on classical control theory, an exact discrete-time model of an induction machine with time-varying components is developed improving the accuracy of state prediction. A torque and stator flux magnitude control algorithm evaluates a cost function for each switching state available in a two-level inverter. The voltage vector with the lowest torque and stator flux magnitude errors is selected to be applied in the next sampling interval. A high degree of flexibility is obtained with the proposed control technique due to the online optimization algorithm, where system nonlinearities and restrictions can be included. Experimental results for a 4-kW induction machine are presented to validate the proposed state-space model and control algorithm.

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Citations
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Journal ArticleDOI

Model Predictive Control for Power Converters and Drives: Advances and Trends

TL;DR: The paper revisits the operating principle of MPC and identifies three key elements in the MPC strategies, namely the prediction model, the cost function, and the optimization algorithm.
Journal ArticleDOI

Model Predictive Control: A Review of Its Applications in Power Electronics

TL;DR: Model-based predictive control (MPC) for power converters and drives is a control technique that has gained attention in the research community as mentioned in this paper, and it can easily handle multivariable case and system constraints and nonlinearities in a very intuitive way.
Journal ArticleDOI

Delay Compensation in Model Predictive Current Control of a Three-Phase Inverter

TL;DR: The problem is described, the solution to this issue is clearly explained using a three-phase inverter as an example, and experimental results to validate this solution are shown.
Journal ArticleDOI

Model Predictive Control of Multilevel Cascaded H-Bridge Inverters

TL;DR: A model predictive current control algorithm that is suitable for multilevel converters and its application to a three-phase cascaded H-bridge inverter and experimental results validate the proposed control algorithm.
References
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Book ChapterDOI

Computer Controlled Systems

TL;DR: The degree of success of a computer control application depends mainly on the effectiveness of the algorithm, which is generally designed from plant specifications and desired performance characteristics.
Journal ArticleDOI

Predictive Control in Power Electronics and Drives

TL;DR: A simple classification of the most important types of predictive control is introduced, and each one of them is explained including some application examples.
Journal ArticleDOI

Predictive Current Control of a Voltage Source Inverter

TL;DR: The results show that the predictive method controls very effectively the load current and performs very well compared with the classical solutions.
Proceedings ArticleDOI

Predictive control in power electronics and drives

TL;DR: In this article, a Powerpoint presentation on predictive control in power electronics and drives is presented, where the areas discussed include predictive control, power electronics, power drive, cascaded control structure, nonlinear control system, switching system, etc.
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