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Defining Requirements for the Implementation of Interconnected Generation in Future Civil Aircraft

机译:定义在未来民用飞机中实施互联一代的要求

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In addition to providing thrust, the engines on conventional civil jet airliners generate power for on-board systems and ancillary loads in the form of pneumatic, hydraulic and electrical power. Reduced fuel-burn and efficiency targets have driven the move towards More Electric Aircraft (MEA) technology which seeks to replace hydraulic and pneumatic loads with electrical equivalents. This technological shift, in conjunction with a growing electrical power load per passenger in general, has greatly increased the electrical power demands of aircraft in recent years - over 1 MVA for the Boeing 787 for example. With increasing fuel prices, there is a growing need to optimise efficiency of power extraction from the aircraft engines for the electrical system and loads. In particular, the utilisation of multi-shaft power off-takes, interconnected generation and power sharing between shafts is thought to offer potentially significant engine operability and fuel efficiency benefits. This paper will consider the benefits afforded by interconnected generation and discuss the challenges associated with achieving this goal. The paper concludes by proposing requirements for the implementation of a "more-interconnected" aircraft electric system.
机译:除了提供推力之外,传统民用喷气机的发动机还为气动,液压和电力的形式产生了车载系统和辅助载荷的动力。降低的燃料燃烧和效率目标已经推动了更多的电气飞机(MEA)技术,该技术旨在用电量替换液压和气动负载。这种技术转变一般与每个乘客的不断增长的电力负荷一起大大增加了近年来飞机的电力需求 - 例如,波音787超过1 MVA。随着燃料价格的提高,越来越需要优化来自飞机发动机的电力提取效率和负载。特别地,沿着轴之间的多轴断电,互联的产生和功率共享的利用被认为提供潜在的显着发动机可操作性和燃料效率的益处。本文将考虑相互连接的生成提供的福利,并讨论与实现这一目标相关的挑战。本文通过提出实施“更多互连”飞机电力系统的要求来结束。

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