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Micro-grid autonomous operation during and subsequent to islanding process

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TLDR
In this paper, the authors investigated preplanned switching events and fault events that lead to islanding of a distribution subsystem and formation of a micro-grid, and they concluded that an appropriate control strategy for the power electronically interfaced DG unit can ensure stability of the microgrid and maintain voltage quality at designated buses, even during islanding transients.
Abstract
This paper investigates (i) preplanned switching events and (ii) fault events that lead to islanding of a distribution subsystem and formation of a micro-grid. The micro-grid includes two distributed generation (DG) units. One unit is a conventional rotating synchronous machine and the other is interfaced through a power electronic converter. The interface converter of the latter unit is equipped with independent real and reactive power control to minimize islanding transients and maintain both angle stability and voltage quality within the micro-grid. The studies are performed based on a digital computer simulation approach using the PSCAD/EMTDC software package. The studies show that an appropriate control strategy for the power electronically interfaced DG unit can ensure stability of the micro-grid and maintain voltage quality at designated buses, even during islanding transients. This paper concludes that presence of an electronically-interfaced DG unit makes the concept of micro-grid a technically viable option for further investigations.

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Citations
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Journal ArticleDOI

Enhancement of micro-grid performance during islanding mode using storage batteries and new fuzzy logic pitch angle controller

TL;DR: In this paper, a new fuzzy logic pitch angle controller is proposed to smooth the output power of wind turbine to reduce MG frequency and voltage fluctuations during the islanding mode, which proved the effectiveness of the proposed fuzzy controller in improvement of the MG performance.
Journal ArticleDOI

Optimal Switch Placement by Alliance Algorithm for Improving Microgrids Reliability

TL;DR: A method for optimal switches placement in distribution systems with distributed generation is presented and allows improving the continuity of the service as confirmed by simulation results on both an IEEE standard and a real test network.
Journal ArticleDOI

Enhancing Flexibility of an Islanded Microgrid With Electric Springs

TL;DR: A model predictive control (MPC) based strategy is proposed to dispatch ESs with a water heating system used as an NCL in an islanded microgrid to accommodate fluctuating renewables.
Journal ArticleDOI

Optimal Load Frequency Control of Island Microgrids via a PID Controller in the Presence of Wind Turbine and PV

TL;DR: The proposed controller provided the desired response to adjusting the microgrid frequency, achieving the final response after a short time and making it more stable and less oscillatory compared with the conventional system.
Journal ArticleDOI

Power Quality Improvement in Autonomous Microgrids Using Multi-functional Voltage Source Inverters: A Comprehensive Review

TL;DR: In this article, the authors comprehensively reviewed the control strategies for power quality enhancement in autonomous microgrids using multi-functional voltage source inverters (VSIs) and compared them with those of multiple devices with independent functionalities.
References
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Book

Electrical Power Systems Quality

TL;DR: In this paper, the authors present a power quality evaluation procedure for the purpose of measuring the power quality of a power supply. But, they do not define the specific classes of power quality problems.

Vector analysis and control of advanced static VAr compensators

TL;DR: The advanced static VAr compensator (ASVC) as mentioned in this paper is based on the principle that a self-commutating static inverter can be connected between three-phase AC power lines and an energy storage device, such as an inductor or capacitor, and controlled to draw mainly reactive current from the lines.
Journal ArticleDOI

Vector analysis and control of advanced static VAr compensators

TL;DR: In this paper, two fundamentally different types of invertor can be used for this purpose, one providing control of output voltage magnitude and phase angle, and the other having only phase angle control.
Journal ArticleDOI

Protection against loss of utility grid supply for a dispersed storage and generation unit

TL;DR: In this paper, the requirements of an islanding, or "loss of grid", protection for a dispersed storage and generation unit are examined, and the principal methods used for this type of relaying are outlined.
Proceedings ArticleDOI

Distributed energy sources: technical challenges

TL;DR: In this article, the main related technical issues are discussed together with the DGs modelling requirements for their analysis, and the main technical issues of the micro-grid are discussed and discussed in detail.
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