推进
汽车工程
飞机燃油系统
过程(计算)
工程类
水力机械
燃料效率
系统工程
计算机科学
航空航天工程
机械工程
燃烧室
化学
有机化学
蒸汽锁
燃烧
操作系统
作者
Bulent Sarlioglu,Casey T. Morris
出处
期刊:IEEE Transactions on Transportation Electrification
日期:2015-06-01
卷期号:1 (1): 54-64
被引量:982
标识
DOI:10.1109/tte.2015.2426499
摘要
Similar to the efforts to move toward electric vehicles, much research has focused on the idea of a more electric aircraft (MEA). The motivations for this research are similar to that for vehicles and include goals to reduce emissions and decrease fuel consumption. In traditional aircraft, multiple systems may use one type or a combination of types of energy, including electrical, hydraulic, mechanical, and pneumatic energy. However, all energy types have different drawbacks, including the sacrifice of total engine efficiency in the process of harvesting a particular energy, as with hydraulic and pneumatic systems. The goal for future aircraft is to replace most of the major systems currently utilizing nonelectric power, such as environmental controls and engine start, with new electrical systems to improve a variety of aircraft characteristics, such as efficiency, emissions, reliability, and maintenance costs. This paper provides an in-depth look into how the systems have-or will be-changed. Future aircraft capabilities such as electric taxi and gas-electric propulsion for aircraft are also included for discussion. Most recent commercial transport aircrafts are described as the current state-of-the-art electric aircraft system. Future goals, including those of NASA, are presented for future advances in MEA.
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