Lithium batteries: Storage applications and methods to improve efficiency

Dionysios Koutsouvelis, G. Vokas
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Abstract

Industrialization, overpopulation, rapid evolution and the human need to increase our living standards often have a negative impact on our environment. Novel ideas and optimized methods must be used not only to halt this negative impact but also to reverse it. One method to do this is by harvesting renewable energy and when not consumed, storing it for use when required. This paper presents a review, focused on energy storage with Lithium batteries and their penetration in the military sector. Applications of use are, from grid connected and autonomous systems with energy storage, microgrids, hybrid and electric vehicles to portable tools or even entertainment equipment. Lithium batteries provide an efficient means of storage but still require improvement. This paper shall also review literature that addresses up to date methods that improve efficiency and their positive impact on Lithium battery life expectancy.Industrialization, overpopulation, rapid evolution and the human need to increase our living standards often have a negative impact on our environment. Novel ideas and optimized methods must be used not only to halt this negative impact but also to reverse it. One method to do this is by harvesting renewable energy and when not consumed, storing it for use when required. This paper presents a review, focused on energy storage with Lithium batteries and their penetration in the military sector. Applications of use are, from grid connected and autonomous systems with energy storage, microgrids, hybrid and electric vehicles to portable tools or even entertainment equipment. Lithium batteries provide an efficient means of storage but still require improvement. This paper shall also review literature that addresses up to date methods that improve efficiency and their positive impact on Lithium battery life expectancy.
锂电池:存储应用和提高效率的方法
工业化、人口过剩、快速进化和人类提高生活水平的需要往往对我们的环境产生负面影响。必须采用新颖的想法和优化的方法,不仅要制止这种负面影响,而且要扭转这种影响。一种方法是收集可再生能源,在不消耗的时候储存起来,以备需要时使用。本文对锂电池储能技术及其在军事领域的应用进行了综述。使用的应用包括,从电网连接和带有储能、微电网、混合动力和电动汽车的自主系统到便携式工具甚至娱乐设备。锂电池提供了一种有效的存储方式,但仍需要改进。本文还将回顾有关提高效率及其对锂电池预期寿命的积极影响的最新方法的文献。工业化、人口过剩、快速进化和人类提高生活水平的需要往往对我们的环境产生负面影响。必须采用新颖的想法和优化的方法,不仅要制止这种负面影响,而且要扭转这种影响。一种方法是收集可再生能源,在不消耗的时候储存起来,以备需要时使用。本文对锂电池储能技术及其在军事领域的应用进行了综述。使用的应用包括,从电网连接和带有储能、微电网、混合动力和电动汽车的自主系统到便携式工具甚至娱乐设备。锂电池提供了一种有效的存储方式,但仍需要改进。本文还将回顾有关提高效率及其对锂电池预期寿命的积极影响的最新方法的文献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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