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Conceptual Study of Low-Pressure Spool-Generating Architecture for More Electric Aircraft

机译:更多电气飞机的低压假脱机架构的概念研究

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This paper will propose a novel power generating system concept including an auxiliary, backup and emergency power source. Existing aircraft employ an auxiliary power unit (APU) and a ram air turbine (RAT) for power generation besides aero-engine generators. An APU works prior to starting propulsion on the ground and as a backup power plant during flight. The RAT is activated due to the need to maintain the essential systems in the case of an emergency situation. Both systems are optimized on conventional aircraft in which hydraulic, pneumatic and electric systems are supplied for control and equipment. Although a conventional aircraft needs hydro pumps and air compressors, the coming of a new era of more-electric architecture for aircraft and propulsion will be the stimulus to improve aircraft systems [1]. In more-electric aircraft, the authors focus on the low-pressure spool generation system of aero-engines. This system is anticipated for large power sources that supply electricity to a bleed-less system, though the high-pressure spool-generating capability is restricted because of the mechanical integrity of the power off-take and aero-engine control stability. LP generation contributes not only to the control stability for aero-engines but also to potential survivability of power generation since it is possible for LP spool to generate energy during wind milling. This paper will discuss the overview of the more-electric aircraft utility resource. To introduce the substituting technology of a conventional power-generating system that relies on RAT and APU, the authors will propose a low-pressure spool-generating architecture involving any power management measures, upon the electrical power demand estimation.
机译:本文将提出一种新颖的发电系统概念,包括辅助,备用和应急电源。除了航空发动机发生器之外,现有的飞机采用辅助动力单元(APU)和用于发电的RAM空气涡轮机(RAT)。 APU在开始在地面启动并作为飞行期间的备用电厂进行工作。由于需要在紧急情况下维持基本系统而激活大鼠。两种系统在传统的飞机上进行了优化,其中提供用于控制和设备的液压,气动和电气系统。虽然传统的飞机需要水力泵和空气压缩机,但是为飞机和推进的更多电气架构的新时代的到来将是改善飞机系统的刺激[1]。在更多电动机,作者侧重于航空发动机的低压阀芯发电系统。预计该系统对于电源向较少的系统提供电源,尽管由于电源关闭和空气发动机控制稳定性的机械完整性而受到限制的高压阀芯产生能力。 LP生成不仅有助于航空发动机的控制稳定性,而且还有助于发电的潜在可生存性,因为LP阀芯可以在风铣过程中产生能量。本文将讨论更多电气飞机实用程序资源的概述。为了引入依赖于RAT和APU的传统发电系统的替代技术,作者将提出涉及任何电力管理估算的低压假脱机架构,涉及任何电力管理措施。

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