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Journal ArticleDOI

Microgrid Scheduling With Uncertainty: The Quest for Resilience

TLDR
This paper presents a two-stage stochastic programming approach to the optimal scheduling of a resilient MG, linearized which offers robustness, simplicity, and computational efficiency in optimizing the MG operation.
Abstract
In recent years, natural disasters around the world have underscored the need for operative solutions that can improve the power grid resilience in response to low-probability high-impact incidents. The advent of microgrids (MGs) in modern power systems has introduced promising measures that can fulfil the power network resiliency requirements. This paper presents a two-stage stochastic programing approach to the optimal scheduling of a resilient MG. The impact of natural disasters on the optimal operation of MGs is modeled using a stochastic programming process. Other prevailing uncertainties associated with wind energy, electric vehicles, and real-time market prices are also taken into account. The proposed hourly scheme attempts to mitigate damaging impacts of electricity interruptions by effectively exploiting the MG capabilities. Incorporating AC network constraints in the proposed model offers a better solution to the security-constrained operation of MGs. The proposed model is linearized which offers robustness, simplicity, and computational efficiency in optimizing the MG operation. The effectiveness of proposed approach is illustrated using a large-scale MG test bed with a realistic set of data.

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Citations
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Journal ArticleDOI

Networked Microgrids for Enhancing the Power System Resilience

TL;DR: It is concluded that networked microgrids in particular provide a universal solution for improving the resilience against extreme events in Smart Cities.
Journal ArticleDOI

Microgrids as a resilience resource and strategies used by microgrids for enhancing resilience

TL;DR: The strategies utilized by microgrids for enhancing their resilience during major outage events are analyzed, which include proactive scheduling, outage management, feasible islanding, and advanced operation strategies for reducing the impact of major disruptions.
Journal ArticleDOI

Toward a Consensus on the Definition and Taxonomy of Power System Resilience

TL;DR: This paper aims to describe and classify different high-impact rare (HR) events, provide a more technical definition of power system resilience, and discuss linkages between resilience and other well-established concepts, such as security and reliability.
Journal ArticleDOI

Resilience-Oriented Proactive Management of Microgrids Against Windstorms

TL;DR: A vulnerability index is defined to assess the effectiveness of the proposed proactive management in reducing the MG vulnerability at the event onset and the proposed model is linearized that guarantees simplicity, robustness, and computational efficiency of the solution.
Journal ArticleDOI

A Review of the Measures to Enhance Power Systems Resilience

TL;DR: The most widely used approaches, methods, and techniques in each of these categories, as well as the future trends for improving the power system resilience are reviewed in this article.
References
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Journal ArticleDOI

Network reconfiguration in distribution systems for loss reduction and load balancing

TL;DR: Accuracy analysis and the test results show that estimation methods can be used in searches to reconfigure a given system even if the system is not well compensated and reconfiguring involves load transfer between different substations.
Journal ArticleDOI

Research on Resilience of Power Systems Under Natural Disasters—A Review

TL;DR: In this paper, the authors consolidate and review the progress of the research field towards methods and tools of forecasting natural disaster related power system disturbances, hardening and pre-storm operations, and restoration models.
Posted Content

Decision Making Under Uncertainty in Electricity Markets

TL;DR: In this paper, the authors consider stochastic programming models for decision-making under uncertainty in the context of electricity markets and provide a brief overview of modeling and solution techniques within a mathematical programming framework.
Journal ArticleDOI

Optimal Planning of Electric-Vehicle Charging Stations in Distribution Systems

TL;DR: In this article, a mathematical model for the optimal sizing of EV charging stations is developed with the minimization of total cost associated with EVs charging stations to be planned as the objective function and solved by a modified primal-dual interior point algorithm (MPDIPA).
Journal ArticleDOI

Optimal Bidding Strategy for Electric Vehicle Aggregators in Electricity Markets

TL;DR: The optimal bidding strategy of an electric vehicle (EV) aggregator participating in day-ahead energy and regulation markets using stochastic optimization is determined and a new battery model is proposed for better approximation of the battery charging characteristic.
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