首页> 外文会议>AIAA propulsin and energy forum;AIAA/IEEE electric aircraft technologies symposium >Modeling and Control Design for a Turboelectric Single Aisle Aircraft Propulsion System
【24h】

Modeling and Control Design for a Turboelectric Single Aisle Aircraft Propulsion System

机译:涡轮电动单通道飞机推进系统的建模与控制设计

获取原文

摘要

A nonlinear dynamic model with full flight envelope controller is developed for the propulsion system of a partially turboelectric single-aisle aircraft. The propulsion system model consists of two turbofan engines with a large percentage of power extraction, feeding an electric tail fan for boundary layer ingestion. The dynamic model is compared against an existing steady state design model. An electrical system model using a simple power flow approach is integrated into existing modeling tools used for dynamic simulation of the turbomachinery of the vehicle. In addition to the simple power flow model of the electrical system, a more detailed model is used for comparison at a key vehicle transient flight condition. The controller is a gain scheduled proportional-integral type that is examined throughout the flight envelope for performance metrics such as rise time and operability margins. Potential improvements in efficiency for the vehicle are explored by adjusting the power split between the energy used for thrust by the turbofans and that extracted to supply power to the tail fan. Finally, an operability study of the vehicle is conducted using a 900 nautical mile mission profile for a nominal vehicle configuration, a deteriorated propulsion system at the end of its operating life, and an optimized power schedule with improved efficiency.
机译:具有全飞行包络控制器的非线性动态模型,为部分涡轮电动单极道飞机的推进系统开发。推进系统模型由两个具有大量功率提取的涡轮机发动机组成,供电用于摄取边界层的电动尾风扇。将动态模型与现有稳态设计模型进行比较。一种电气系统模型,使用简单的电流方法集成到现有的建模工具中,用于车辆涡轮机的动态模拟。除了电气系统的简单功率流模型之外,还使用更详细的模型在关键车辆瞬态飞行条件下进行比较。控制器是增益调度的比例积分类型,其在整个飞行信封中检查,用于性能度量,例如上升时间和可操作性边距。通过调节用于由涡轮机用于推力的能量之间的功率分开来探讨车辆效率的潜在改进,并且提取到向尾部风扇供电。最后,使用900海里的统一特性配置文件进行标称车辆配置,其经营寿命结束的劣化推进系统以及具有提高效率的优化电源调度进行了可操作性研究。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号