Journal ArticleDOI
Empowering smart grid: A comprehensive review of energy storage technology and application with renewable energy integration
Kang Miao Tan,Thanikanti Sudhakar Babu,Vigna K. Ramachandaramurthy,Padmanathan Kasinathan,Sunil G. Solanki,Shangari K. Raveendran +5 more
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TLDR
The future scope suggests that researchers shall develop innovative energy storage systems to face challenges in power system networks, to maintain reliability and power quality, as well as to meet the energy demand.Abstract:
The rapid growth in the usage and development of renewable energy sources in the present day electrical grid mandates the exploitation of energy storage technologies to eradicate the dissimilarities of intermittent power. The energy storage technologies provide support by stabilizing the power production and energy demand. This is achieved by storing excessive or unused energy and supplying to the grid or customers whenever it is required. Further, in future electric grid, energy storage systems can be treated as the main electricity sources. Researchers and industrial experts have worked on various energy storage technologies by integrating different renewable energy resources into energy storage systems. Due to the wide range of developments in energy storage technologies, in this article, authors have considered various types of energy storage technologies, namely battery, thermochemical, thermal, pumped energy storage, compressed air, hydrogen, chemical, magnetic energy storage, and a few others. These energy storage technologies were critically reviewed; categorized and comparative studies have been performed to understand each energy storage system's features, limitations, and advantages. Further, different energy storage system frameworks have been suggested based on its application. Therefore, this paper acts as a guide to the new researchers who work in energy storage technologies. The future scope suggests that researchers shall develop innovative energy storage systems to face challenges in power system networks, to maintain reliability and power quality, as well as to meet the energy demand.read more
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Integrated energy conversion and storage devices: interfacing solar cells, batteries and supercapacitors
L. Fagiolari,Matteo Sampo,Andrea Lamberti,Julia Ginette Nicole Amici,Carlotta Francia,Silvia Bodoardo,Federico Bella +6 more
TL;DR: In this article , the main challenges facing in recent years and the most significant results obtained from the integration of photovoltaic cells, supercapacitors and batteries are discussed, as well as the designs of integration, the impact of nanostructured materials, the possibility of developing electrodes shared between several parts of the devices and the possibility to achieving important objectives in the field of portable electronics.
Journal ArticleDOI
A Cnn-Abc Model for Estimation and Optimization of Heat Generation Rate and Voltage Distributions of Lithium-Ion Batteries for Electric Vehicles
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A CNN-ABC model for estimation and optimization of heat generation rate and voltage distributions of lithium-ion batteries for electric vehicles
TL;DR: In this paper , the authors proposed a novel scheme, namely convolutional neural network (CNN)-artificial bee colony (ABC) leveraged from CNN and ABC algorithm for HGR and voltage estimation.
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A literature survey on load frequency control considering renewable energy integration in power system: Recent trends and future prospects
Mrinal Ranjan,Ravi Shankar +1 more
TL;DR: In this paper , a comprehensive review of recent technical core aspects for LFC based on classical and modern power system which involves the nonlinear model, controller design parameters, soft-computing application, attributes of load forecasting, as well as integration of renewable energy sources (RES) in a deregulated environment.
References
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Hierarchical control of droop-controlled DC and AC microgrids — a general approach towards standardization
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