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Analysis and Design of Hybrid Energy Storage Systems

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ISBN: 9783039286867 / 9783039286874 Year: Pages: 180 DOI: 10.3390/books978-3-03928-687-4 Language: eng
Publisher: MDPI - Multidisciplinary Digital Publishing Institute
Subject: Technology (General) --- General and Civil Engineering
Added to DOAB on : 2020-06-09 16:38:57
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Abstract

The most important environmental challenge today's society is facing is to reduce the effects of CO2 emissions and global warming. Such an ambitious challenge can only be achieved through a holistic approach, capable of tackling the problem from a multidisciplinary point of view. One of the core technologies called to play a critical role in this approach is the use of energy storage systems. These systems enable, among other things, the balancing of the stochastic behavior of Renewable Sources and Distributed Generation in modern Energy Systems; the efficient supply of industrial and consumer loads; the development of efficient and clean transport; and the development of Nearly-Zero Energy Buildings (nZEB) and intelligent cities. Hybrid Energy Storage Systems (HESS) consist of two (or more) storage devices with complementary key characteristics, that are able to behave jointly with better performance than any of the technologies considered individually. Recent developments in storage device technologies, interface systems, control and monitoring techniques, or visualization and information technologies have driven the implementation of HESS in many industrial, commercial and domestic applications. This Special Issue focuses on the analysis, design and implementation of hybrid energy storage systems across a broad spectrum, encompassing different storage technologies (including electrochemical, capacitive, mechanical or mechanical storage devices), engineering branches (power electronics and control strategies; energy engineering; energy engineering; chemistry; modelling, simulation and emulation techniques; data analysis and algorithms; social and economic analysis; intelligent and Internet-of-Things (IoT) systems; and so on.), applications (energy systems, renewable energy generation, industrial applications, transportation, Uninterruptible Power Supplies (UPS) and critical load supply, etc.) and evaluation and performance (size and weight benefits, efficiency and power loss, economic analysis, environmental costs, etc.).

Optimum Choice of Energy System Configuration and Storages for a Proper Match between Energy Conversion and Demands

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ISBN: 9783039280360 9783039280377 Year: Pages: 362 DOI: 10.3390/books978-3-03928-037-7 Language: English
Publisher: MDPI - Multidisciplinary Digital Publishing Institute
Subject: Science (General) --- Physics (General)
Added to DOAB on : 2020-04-07 23:07:09
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This Special Issue addresses the general problem of a proper match between the demands of energy users and the units for energy conversion and storage, by means of proper design and operation of the overall energy system configuration. The focus is either on systems including single plants or groups of plants, connected or not to one or more energy distribution networks. In both cases, the optimum design and operation involve decisions about thermodynamic processes, about the type, number, design parameters of components/plants, and storage capacities, and about mutual interconnections and the interconnections with the distribution grids. The problem is absolutely general, encompassing design and operation of energy systems for single houses, groups of houses, industries, industrial districts, municipal areas, regions and countries. The presented papers show that similar approaches can be used in different applications, although a general standard has not been achieved yet.

Keywords

advanced exergy-based analysis --- superstructure-based --- superstructure-free --- mathematical programming --- flowsheet synthesis --- multi-objective optimization --- thermal power plants --- gas supply chain --- optimization --- distributed energy --- liquefied natural gas (LNG) --- compressed natural gas (CNG) --- small-scale compressed-air energy storage (SS-CAES) --- energy storage --- exergy analysis --- optimization --- Real Coded Genetic Algorithm (RCGA) --- Violation Constraint-Handling (VCH) --- oil palm --- palm oil mills --- palm oil residues --- value-added products --- supply chains optimization --- spatial analysis --- techno-economic analysis --- wave energy --- battery storage --- price estimation --- hourly distribution --- electricity production --- electricity demand --- synthesis/design optimization --- cycle configuration --- absorption technology --- absorption refrigerator --- district energy system --- optimization --- renewable energy systems --- combined heat and power --- operating cost --- uncertainty --- reliability --- sustainability --- IEEE-RTS --- uncertainties --- MONA --- energy storage --- thermo-electric --- supercritical CO2 --- solar energy --- thermal energy storage --- mixed integer linear programming --- rolling-horizon --- combined heat and power --- optimization --- energy systems --- integrated ship energy systems --- synthesis --- design and operation optimization --- intertemporal optimization --- dynamic optimization --- smart energy systems --- Mixed-Integer NonLinear/Linear Programming (MINLP/MILP) --- dynamic modelling --- design and operation optimization --- fleet of energy conversion and storage units --- smart power systems --- multi-energy systems --- optimization of energy systems design and operation

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MDPI - Multidisciplinary Digital Publishing Institute (2)


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2020 (2)