【24h】

Enabling Trajectory Based Operations through Air-Ground Data Exchange

机译:通过空中数据交换实现基于轨迹的操作

获取原文

摘要

Trajectory Based Operations (TBO), a key concept in the US Next Generation Air Transportation System (NextGen) and in Europe's Single European Sky ATM Research (SESAR), allows for more efficient planning and execution of flight plans. The basis for TBO is to plan and perform operations using a shared view of the flight that takes into account user preferences and is expressed by a four-dimensional (4D) trajectory. Interoperability issues, due to dissimilar requirements that trajectories need to satisfy in the various automation systems involved in air traffic management, could limit the efficiency gains expected from TBO. Recognizing the importance to TBO of advancing trajectory synchronization and negotiation technologies, Lockheed Martin, GE Aviation Systems and GE Global Research have joined forces to develop and test trajectory synchronization strategies. We identified the steps and specific messages that need to be exchanged in order to resolve discrepancies between the trajectory used by the Flight Management System (FMS) to guide the aircraft and the trajectory used by Air Traffic Control (ATC) ground automation systems. Using real world FMS and ATC systems we developed trajectory synchronization and negotiation algorithms and methods to integrate the FMS trajectory directly into the ground automation systems used by ATC. The FMS trajectory takes into account operator preferences and has the benefit of the high fidelity aircraft performance models and flight specific parameters that affect the trajectory. In the process of synchronizing the air-ground trajectories, all the advantages of the FMS trajectory are now available to ground automation.
机译:基于轨迹的运行(TBO)是美国下一代航空运输系统(NextGen)和欧洲的单一欧洲空中ATM研究(SESAR)的关键概念,可实现更有效的飞行计划和执行计划。 TBO的基础是使用航班的共享视图来计划和执行操作,该共享视图考虑了用户的偏好并以四维(4D)轨迹表示。由于空中交通管理中涉及的各种自动化系统中轨迹需要满足的不同要求,互操作性问题可能会限制TBO预期的效率提升。认识到先进的轨迹同步和协商技术对TBO的重要性,洛克希德·马丁公司,GE航空系统公司和GE Global Research联手开发和测试了轨迹同步策略。我们确定了需要交换的步骤和特定消息,以解决由飞行管理系统(FMS)指导飞机使用的轨迹与空中交通管制(ATC)地面自动化系统使用的轨迹之间的差异。通过使用现实世界的FMS和ATC系统,我们开发了轨迹同步和协商算法和方法,以将FMS轨迹直接集成到ATC使用的地面自动化系统中。 FMS轨迹考虑了运营商的偏好,并受益于高保真飞机性能模型和影响轨迹的特定于飞行的参数。在同步空地轨迹的过程中,FMS轨迹的所有优势现在都可用于地面自动化。

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