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Nanotechnology enabled hybrid power system suitable for batteries in hybrid electric vehicle

机译:适用于混合动力电动汽车电池的纳米技术混合动力系统

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Hybrid electric vehicles are playing very important key role in transportation. As atmospheric imbalance is a cause of large amount of carbon emission due to fuel used in vehicles. So to mitigate this problem use of electric vehicles is increasing day by day. Lithium-ion batteries are playing very crucial role in hybrid electric vehicles. As these batteries are very beneficial for proper functioning of hybrid electric vehicles. So Lithium-ion is the best and most promising choice at the present. Lithium-ion batteries have myriad amount of applications in the field of electric vehicles and portable electronics. The worldwide demand for a clean, low fuel-consuming road transportation system has given raises to the rapid growth of hybrid electric vehicles. Nanotechnology is playing vital role in enhancing the battery life. So use of nanostructure materials in battery design is increasing day by day. This enables battery to become effectual in many applications Lithium- ion batteries (LIBs) are the best choice as they have advantages such as high energy density, high discharge power and long service life. In large scale applications of lithium ion battery important aspects such as safety, toxicity, cost and myriad of raw materials become highly significant and also high discharge rate requirements can be fulfill by the use of nanostructure materials to achieve performance targets. This paper mainly focuses on use of nanotechnology in lithium-ion battery technology. For this purpose system can be designed which is combination of many technology and based on nanotechnology that enables to use nanostructure materials for lithium ion battery used in hybrid electric vehicles. This system is nanotechnology enabled hybrid system which can be very beneficial to ameliorates the performance of the battery that will further helps in ameliorating performance of hybrid electric vehicles. Super capacitors are used in parallel combination in the hybrid system to increases battery performance, efficiency and life of battery this system can play important role in betterment of transportation as well as in enhancing electrification of transportation. Nanostructure materials in batteries ameliorate the electrochemical performances of existing electrode materials for lithium-ion batteries, for this purpose nanotechnology based hybrid system is very beneficial.
机译:混合动力汽车在交通运输中起着非常重要的关键作用。由于车辆中使用的燃料,大气不平衡是导致大量碳排放的原因。因此,为减轻该问题,电动汽车的使用正在日益增加。锂离子电池在混合动力电动汽车中起着至关重要的作用。因为这些电池对于混合动力电动汽车的正常运行非常有益。因此,锂离子是目前最好,最有前途的选择。锂离子电池在电动汽车和便携式电子领域中有无数的应用。全世界对清洁,低油耗的道路运输系统的需求推动了混合动力电动汽车的快速发展。纳米技术在延长电池寿命方面起着至关重要的作用。因此,纳米结构材料在电池设计中的使用正在日益增加。这使电池在许多应用中变得有效。锂离子电池(LIB)是其最佳选择,因为它们具有高能量密度,高放电功率和长使用寿命等优点。在锂离子电池的大规模应用中,诸如安全性,毒性,成本和无数原材料的重要方面变得非常重要,并且通过使用纳米结构材料来达到性能目标也可以满足高放电速率要求。本文主要关注纳米技术在锂离子电池技术中的应用。为此,可以设计多种技术的组合并且基于纳米技术的系统,该系统能够将纳米结构材料用于混合动力电动汽车中使用的锂离子电池。该系统是启用纳米技术的混合动力系统,对于改善电池的性能非常有利,这将进一步有助于改善混合动力电动汽车的性能。超级电容器在混合动力系统中并联使用,可提高电池性能,效率和电池寿命,该系统在改善运输和增强运输电气化方面可发挥重要作用。电池中的纳米结构材料改善了锂离子电池现有电极材料的电化学性能,为此,基于纳米技术的混合系统非常有益。

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