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Journal ArticleDOI

Switching Frequency Reduction Using Model Predictive Direct Current Control for High-Power Voltage Source Inverters

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TLDR
A novel current control approach called model predictive direct current control (MPDCC) is presented, which takes into account the discrete states of the voltage source inverter (VSI), and the current errors are predicted for each sampling period.
Abstract
In this paper, a novel current control approach called model predictive direct current control (MPDCC) is presented. The controller takes into account the discrete states of the voltage source inverter (VSI), and the current errors are predicted for each sampling period. Voltage vectors are selected by a graph algorithm, whereby the most appropriate vector is chosen based on an optimization criterion. However, this depends on whether the state of the system is transient or steady. In the first case, the current error should be minimized as fast as possible in order to obtain fast dynamics. In the latter one, the VSI switching behavior is optimized since the switching losses account for a large amount of the total converter losses in high-power drive systems. MPDCC has been developed for a general neutral-point isolated resistive-inductive load with an internal voltage source. For demonstration, the presented control strategy has been implemented on a small-scale permanent-magnet synchronous machine drive system with a two-level VSI. This new approach has several advantages. The most important one is that the switching frequency is reduced up to 70% compared to linear control combined with pulsewidth modulation. Second, MPDCC obtains fast dynamic responses, which are already known from, e.g., direct torque control.

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Citations
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Journal ArticleDOI

Predictive Torque Control With Online Weighting Factor Computation Technique to Improve Performance of Induction Motor Drive in Low Speed Region

TL;DR: A method is proposed that estimates online weighting factors, which modifies the cost function consecutively based on the principle of CV, which is compared with the conventional normalized weighting factor-based PTC method specifically to improve the demagnetization effect in the low-speed operation.
Journal ArticleDOI

Transducerless Acquisition of the Rotor Position for Predictive Torque Controlled PM Synchronous Machines Based on a DSP-FPGA Digital System

TL;DR: Experimental results in a wide-speed-range obtained by using a hybrid digital system which consist of a digital signal processor (DSP) and of a field-programmable gate array (FPGA) verify the effectiveness of the proposed encoderless predictive control scheme.
Journal ArticleDOI

Power Calculation for Direct Power Control of Single-Phase Three-Level Rectifiers Without Phase-Locked Loop

TL;DR: A novel single- phase power calculation method without PLL is proposed to improve the performance of single-phase three-level rectifier which is widely used in railway traction drive system and is compared with two traditional PLL-based control schemes.
Journal ArticleDOI

Model Predictive Observer Based Control for Single-Phase Asymmetrical T-Type AC/DC Power Converter

TL;DR: The inner current tracking loop is accomplished by an FCS-MPC algorithm that is derived to force the input currents to track the reference values while realizing a user-defined reactive power and maintaining balanced voltages in the series-connected capacitors.
Journal ArticleDOI

Model predictive torque control with an extended prediction horizon for electrical drive systems

TL;DR: The results show that the proposed model predictive torque control method achieves good performance in both steady and transient states.
References
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Book

Predictive Control With Constraints

TL;DR: A standard formulation of Predictive Control is presented, with examples of step response and transfer function formulations, and a case study of robust predictive control in the context of MATLAB.
Journal ArticleDOI

A New Quick-Response and High-Efficiency Control Strategy of an Induction Motor

TL;DR: In this article, the authors proposed a limit cycle control of both flux and torque using optimum PWM output voltage; a switching table is employed for selecting the optimum inverter output voltage vectors so as to attain as fast a torque response, as low an inverter switching frequency, and as low harmonic losses as possible.
Journal ArticleDOI

Current control techniques for three-phase voltage-source PWM converters: a survey

TL;DR: Current control techniques for three-phase voltage-source pulsewidth modulated converters, including bang-bang (hysteresis, delta modulation) controllers and predictive controllers with on-line optimization are reviewed.
Journal ArticleDOI

Model Predictive Control—A Simple and Powerful Method to Control Power Converters

TL;DR: The feasibility and great potential of FCS-MPC due to present-day signal-processing capabilities, particularly for power systems with a reduced number of switching states and more complex operating principles, such as matrix converters are found.
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.
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