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Journal ArticleDOI

A wireless controller to enhance dynamic performance of parallel inverters in distributed generation systems

TLDR
In this paper, a novel control strategy for parallel inverters of distributed generation units in an AC distribution system is presented, based on the droop control method, using only locally measurable feedback signals.
Abstract
This paper presents a novel control strategy for parallel inverters of distributed generation units in an AC distribution system. The proposed control technique, based on the droop control method, uses only locally measurable feedback signals. This method is usually applied to achieve good active and reactive power sharing when communication between the inverters is difficult due to its physical location. However, the conventional voltage and frequency droop methods of achieving load sharing have a slow and oscillating transient response. Moreover, there is no possibility to modify the transient response without the loss of power sharing precision or output-voltage and frequency accuracy. In this work, a great improvement in transient response is achieved by introducing power derivative-integral terms into a conventional droop scheme. Hence, better controllability of the system is obtained and, consequently, correct transient performance can be achieved. In addition, an instantaneous current control loop is also included in the novel controller to ensure correct sharing of harmonic components when supplying nonlinear loads. Simulation and experimental results are presented to prove the validity of this approach, which shows excellent performance as opposed to the conventional one.

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Citations
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Proceedings ArticleDOI

Modeling power inverter interactions in a low voltage grid

TL;DR: In this paper, a generalized model of a droop-controlled voltage source inverter is presented, which can be modified to represent traditional rotating generators as well as external conditions imposed at the point of coupling to the grid.
Proceedings ArticleDOI

A simplified control architecture for three-phase inverters in modular UPS application with shunt active power filter embedded

TL;DR: In this article, a simplified control architecture, including individual layer control and recover layer control, is proposed for a modular online uninterruptible power supply (UPS) system, which mainly concentrates on the active power sharing performance due to the existence of the shunt active power filter.
Proceedings ArticleDOI

Intelligent control scheme for output efficiency improvement of parallel inverters

TL;DR: An intelligent control scheme based on the output efficiency curve of a single inverter and an artificial-intelligence-based algorithm is used to find the optimal output efficiency of parallel inverters.
Journal ArticleDOI

A load frequency control in an off-grid sustainable power system based on a parameter adaptive PID-type fuzzy controller

TL;DR: The results demonstrate the effectiveness of the PAPIDfc scheme to control a grid-supporting inverter of the battery in the reduction of frequency fluctuations.
References
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Journal ArticleDOI

Control of parallel connected inverters in stand-alone AC supply systems

TL;DR: In this article, a control scheme for parallel-connected inverters in a standalone AC supply system is presented, which uses feedback of only those variables that can be measured locally at the inverter and does not need communication of control signals between the inverters.
Book

Power Systems Analysis

TL;DR: In this article, the authors present a model of a single machine-infinite bus (SIB) with three-phase transformer connections for the purpose of detecting faults in a generator.
Journal ArticleDOI

Parallel operation of voltage source inverters

TL;DR: In this paper, the authors discuss the problem of parallel operating systems of voltage source inverters with other inverters or with the utility source and propose several methods for protection against failure.
Journal ArticleDOI

Sharing of nonlinear load in parallel connected three-phase converters

TL;DR: In this article, a new control method is presented which enables equal sharing of linear and nonlinear loads in three-phase power converters connected in parallel, without communication between the converters.
Proceedings ArticleDOI

Parallel operation of single phase inverter modules with no control interconnections

TL;DR: In this article, the authors developed a control technique for operating two or more single phase inverter modules in parallel with no auxiliary interconnections, using frequency, fundamental voltage, and harmonic voltage droop to allow independent inverters to share the load in proportion to their capacities.
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