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Journal ArticleDOI

Robust Security Constrained-Optimal Power Flow Using Multiple Microgrids for Corrective Control of Power Systems Under Uncertainty

TLDR
This paper proposes a new robust security-constrained optimal power flow (SCOPF) method to balance the economy.
Abstract
This paper proposes a new robust security-constrained optimal power flow (SCOPF) method to balance the economy. and security requirements under uncertainties associated with renewable generation and load demand. Given the significant growth in microgrid (MG) deployments over the world, this paper explores the potential of using multiple MGs in supporting main grid's security control. Corrective control is employed to relieve postcontingency overflows by effectively coordinating system generators and multiple MGs. An incentive-based mechanism is designed to encourage the MGs to actively cooperate with the main grid for postcontingency recovery, which makes the proposed method to distinguish from the previous models using a traditional centralized control method, such as direct load control. A scenario-decomposition-based approach is then developed to solve the proposed robust SCOPF problem. Numerical simulations on IEEE 14- and IEEE 118-bus systems demonstrate the effectiveness and efficiency of the proposed method.

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Citations
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Journal ArticleDOI

Optimal Operation of Multimicrogrids via Cooperative Energy and Reserve Scheduling

TL;DR: This paper proposes the optimal operation of MMGs by a cooperativeEnergy and reserve scheduling model, in which energy and reserve can be cooperatively utilized among M MGs.
Journal ArticleDOI

Reconfigurable Distribution Network for Managing Transactive Energy in a Multi-Microgrid System

TL;DR: A bi-level programming framework for the coordination of multi-MG energy TE trading and the operation of power distribution systems is proposed and case studies considering the modified IEEE 33-bus show the effective applications of the proposed framework and algorithm.
Journal ArticleDOI

A Distributed Control Scheme of Thermostatically Controlled Loads for the Building-Microgrid Community

TL;DR: In this paper, a distributed control scheme with a two-layer hierarchical communication graph is proposed to mitigate the photovoltaic and load variations in a building-microgrid community, so that the whole community can provide ancillary services, e.g., fulfilling the power dispatch order from the main grid.
Journal ArticleDOI

Interactive Energy Management for Enhancing Power Balances in Multi-Microgrids

TL;DR: A decentralized interactive algorithm is designed to implement the bilayer IEM framework by using the Nash equilibrium concept and the emergency situation is covered to enhance the resilience of the system.
Journal ArticleDOI

A bi-level robust planning model for active distribution networks considering uncertainties of renewable energies

TL;DR: A bi-level robust planning model for active management elements (AMEs) including on-load tap changer, electrical storage system, capacitor bank, and static VAR compensation is proposed in order to accommodate uncertain development of wind power and photovoltaic power.
References
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Journal ArticleDOI

MATPOWER: Steady-State Operations, Planning, and Analysis Tools for Power Systems Research and Education

TL;DR: The details of the network modeling and problem formulations used by MATPOWER, including its extensible OPF architecture, are presented, which are used internally to implement several extensions to the standard OPF problem, including piece-wise linear cost functions, dispatchable loads, generator capability curves, and branch angle difference limits.
Journal ArticleDOI

Optimal Load Flow with Steady-State Security

TL;DR: In this paper, the authors extend the Dommel-Tinney approach by incorporating exact outage-contingency constraints into the method, to give an optimal steady-state-secure system operating point.
Journal ArticleDOI

Base-Load Cycling on a System With Significant Wind Penetration

TL;DR: In this article, the authors show the serious impact increasing levels of wind power will have on the operation of base-load units and the sensitivity analysis shows the presence of storage or interconnection on a power system actually exacerbates base load cycling.
Journal ArticleDOI

A New Iterative Approach to the Corrective Security-Constrained Optimal Power Flow Problem

TL;DR: This paper proposes a new iterative approach that comprises four modules: a CSCOPF which considers only a subset of potentially binding contingencies among the postulated contingencies, a (steady-state) security analysis (SSSA), a contingency filtering (CF) technique, and an OPF variant to check post-contingency state feasibility when taking into account post-Contingency corrective actions.
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