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Journal ArticleDOI

A Two Degrees of Freedom Resonant Control Scheme for Voltage-Sag Compensation in Dynamic Voltage Restorers

TLDR
In this paper, a two-degree-of-freedom (2DOF) control scheme for voltage compensation in a dynamic voltage restorer (DVR) power circuit is presented.
Abstract
This paper presents a two degrees of freedom (2DOF) control scheme for voltage compensation in a dynamic voltage restorer (DVR). It commences with the model of the DVR power circuit, which is the starting point for the control design procedure. The control scheme is based on a 2DOF structure implemented in a stationary reference frame ( $\alpha \text{--}\beta$ ), with two nested controllers used to obtain a passband behavior of the closed-loop transfer function, and is capable of achieving both a balanced and an unbalanced voltage-sag compensation. The 2DOF control has certain advantages with regard to traditional control methods, such as the possibility of ensuring that all the poles of the closed-loop transfer function are chosen without the need for observers and reducing the number of variables to be measured. The use of the well-known double control-loop schemes that employ feedback current controllers to reduce the resonance of the plant is, therefore, unnecessary. A simple control methodology permits the dynamic behavior of the system to be controlled and completely defines the location of the poles. Furthermore, extensive simulations and experimental results obtained using a 5-kW DVR laboratory prototype show the good performance of the proposed control strategy.

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Citations
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Journal ArticleDOI

Dual $P$ - $Q$ Theory Based Energy-Optimized Dynamic Voltage Restorer for Power Quality Improvement in a Distribution System

TL;DR: The proposed algorithm adapts energy-optimized series voltage compensation, which results in a reduction of energy storage requirement and model-based computer simulation studies and real-time experimental results validate the effectiveness of the proposed control algorithm.
Journal ArticleDOI

A Novel Dual-DC-Port Dynamic Voltage Restorer With Reduced-Rating Integrated DC–DC Converter for Wide-Range Voltage Sag Compensation

TL;DR: In this paper, a dual-dc-port dynamic voltage restorer (DDP-DVR) is proposed to compensate shallow voltage sags without using the dc-dc converter.
Journal ArticleDOI

Dynamic Voltage Restorer (DVR) – A Review

TL;DR: The working principle, structure, various topologies, compensation techniques, voltage sag detection methods and control methods of the DVR are given under different sections and can be useful for the researchers beginning their work in the domain of DVR.
Journal ArticleDOI

Management of Power Quality Issues from an Economic Point of View

TL;DR: In this article, a method for estimating the economic consequences of a poor power quality (PQ), with priority for the disturbances with significant economic effects, is proposed to determine the total cost for each type of PQ perturbation that may occur.
Journal ArticleDOI

A Discrete-Time Control Method for Fast Transient Voltage-Sag Compensation in DVR

TL;DR: A discrete-time domain control scheme for balanced voltage sag compensation using a Dynamic Voltage Restorer (DVR), which is recognized to be an appropriate and economical power electronic device with which to ameliorate these disturbances.
References
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Journal ArticleDOI

Compensation voltage control in dynamic voltage restorers by use of feed forward and state feedback scheme

TL;DR: In this paper, a combined feed forward and state feedback control structure for the compensation voltages of DVRs is developed based on power stage analysis, and design guidelines are proposed for the control gains and the inverter switching frequency of a DVR system.
Journal ArticleDOI

Dynamic Voltage Restorer Based on Flying Capacitor Multilevel Converters Operated by Repetitive Control

TL;DR: In this article, the authors present a control system based on the so-called repetitive control for a five-level flying-capacitor dynamic voltage restorer (DVR).
Journal ArticleDOI

Investigation and Improvement of Transient Response of DVR at Medium Voltage Level

TL;DR: In this article, an effective and simple resonance damping method is proposed by employing a closed-loop control with an embedded two-step Posicast controller, which has been extensively tested on a 10-kV DVR system.
Journal ArticleDOI

Analysis of Control-Delay Reduction for the Improvement of UPS Voltage-Loop Bandwidth

TL;DR: A small shift of the output-voltage sampling can significantly increase the UPS voltage-loop bandwidth while keeping the same stability margin, and less contribution comes from the delay minimization of the inductor-current sampling, so that current-ripple cancellation techniques are not needed.
Journal ArticleDOI

Global Minimization of Financial Losses Due to Voltage Sags With FACTS Based Devices

TL;DR: In this article, the authors presented an approach for comprehensively assessing the financial benefits to the network resulting from their use of FACTS-based devices, where the annual financial losses of the entire network due to voltage sags were used as a savings target.
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