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Efficiency Benefits Using the Terminal Area Precision Scheduling and Spacing System

机译:使用终端区域精确调度和间隔系统的效率优势

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NASA has developed a capability for terminal area precision scheduling and spacing (TAPSS) to increase the use of fuel-efficient arrival procedures during periods of traffic congestion at a high-density airport. Sustained use of fuel-efficient procedures throughout the entire arrival phase of flight reduces overall fuel burn, greenhouse gas emissions and noise pollution. The TAPSS system is a 4D trajectory-based strategic planning and control tool that computes schedules and sequences for arrivals to facilitate optimal profile descents. This paper focuses on quantifying the efficiency benefits associated with using the TAPSS system, measured by reduction of level segments during aircraft descent and flight distance and time savings. The TAPSS system was tested in a series of human-in-the-loop simulations and compared to current procedures. Compared to the current use of the TMA system, simulation results indicate a reduction of total level segment distance by 50% and flight distance and time savings by 7% in the arrival portion of flight (~200 nm from the airport). The TAPSS system resulted in aircraft maintaining continuous descent operations longer and with more precision, both achieved under heavy traffic demand levels.
机译:美国国家航空航天局(NASA)已开发出一种用于终端区域精确调度和间隔(TAPSS)的功能,以在高密度机场的交通拥堵期间增加使用节油的到达程序。在整个航班到达阶段持续使用节油程序,可减少总体燃油消耗,温室气体排放和噪音污染。 TAPSS系统是一种基于4D轨迹的战略规划和控制工具,可计算到达的时间表和顺序,以促进最佳的下降轮廓。本文着重于量化与使用TAPSS系统相关的效率收益,该收益是通过在飞机下降,飞行距离和节省时间方面减少级别段来衡量的。 TAPSS系统已在一系列的在环仿真中进行了测试,并与当前程序进行了比较。与当前使用的TMA系统相比,仿真结果表明,在到达航班的部分(距机场约200海里),总水平航段距离减少了50%,航班距离和时间节省了7%。 TAPSS系统使飞机能够在更长时间的交通需求水平下保持更长,更精确的连续下降操作。

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