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Open AccessJournal ArticleDOI

Sodium sulfur batteries allocation in high renewable penetration microgrids using coronavirus herd immunity optimization

TLDR
In this paper, an optimization framework is proposed to enhance a grid-connected microgrid performance in three stages, the first stage epitomizes maximization of the self-consumption rate of the highly-penetrated renewables hosted in the microgrid considered via sodium sulfur batteries allocation.
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This article is published in Ain Shams Engineering Journal.The article was published on 2021-09-28 and is currently open access. It has received 6 citations till now. The article focuses on the topics: Penetration (warfare) & Renewable energy.

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Operation control, energy management, and power quality enhancement for a cluster of isolated microgrids

TL;DR: In this article , a proposed energy management system (EMS) built on the marine predator algorithm (MPA) is presented, with its design based on a hierarchical decentralized strategy for a cluster of interconnected microgrids.
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Optimal CONOPT solver-based coordination of bi-directional converters and energy storage systems for regulation of active and reactive power injection in modern power networks

TL;DR: In this article , the effects of the coordination of BDCs and ESSs on modern power systems were considered and the CONOPT solver embedded in the general algebraic modeling system (GAMS) was used to analyze this problem and find the optimal location of ESS in the system.
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Human-Inspired Optimization Algorithms: Theoretical Foundations, Algorithms, Open-Research Issues and Application for Multi-Level Thresholding

TL;DR: A survey and analysis associated with modern compartment of NIOA engineered upon the perception of human behavior and intelligence is presented in this paper , stressing on its theoretical foundations, applications, open research issues and their implications on color satellite image segmentation to further develop Multi-Level Thresholding (MLT) models.
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Assessing the Role of Energy Storage in Multiple Energy Carriers toward Providing Ancillary Services: A Review

TL;DR: In this article , a review of successful implementations proved that including storage in one or more carriers benefits the distribution system operators and the prosumers, from both technical and economic perspectives, and proposed a correlation between individual energy storage technologies and the ancillary services they can provide based on their responses to specific grid requirements.
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Marine predators optimization and ANFIS as an effective tools for maximization of specific capacity of G-NiO electrode for electrochemical energy storage

TL;DR: In this paper , the best operating parameters of NiO electrodeposition process have been identified using artificial intelligence and meta-heuristic techniques to maximize the specific capacity of G-NiO.
References
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State-of-the-art of hosting capacity in modern power systems with distributed generation

TL;DR: It was concluded that success in integrating more distributed generation hinges on accurate hosting capacity assessment, and a systematic and extensive overview of the HC research, developments, assessment techniques and enhancement technologies is provided.
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Techno-economic assessment of energy storage systems using annualized life cycle cost of storage (LCCOS) and levelized cost of energy (LCOE) metrics

TL;DR: An ES cost model that considers long-term, medium- term, and short-term ES applications, technologies and technical characteristics in an integrated framework that considers the ES technical and economic characteristics supported by in-market insight is presented.
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An efficient cost-reliability optimization model for optimal siting and sizing of energy storage system in a microgrid in the presence of responsible load management

TL;DR: In this paper, a bi-objective optimization model for optimal siting and sizing of an energy storage system (ESS) in a microgrid in the presence of demand response program (DRP) is proposed.
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Advanced intermediate temperature sodium–nickel chloride batteries with ultra-high energy density

TL;DR: It is demonstrated that planar sodium–nickel chloride batteries can be operated at an intermediate temperature of 190 °C with ultra-high energy density and could greatly benefit this traditional energy storage technology by improving battery energy density, cycle life and reducing material costs.
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