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Towards higher level of A-SMGCS: Handshake of electric taxi and trajectory-based taxi operations

机译:迈向更高级别的A-SMGCS:电动出租车和基于轨迹的出租车运营的握手

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This paper focuses on newly developed alternative ground propulsion systems of aircraft for airport surface operations and their dependencies with decision support tools for air traffic controller in the airport tower. Both issues refer to functionalities from the Advanced Surface Movement Guidance and Control System (A-SMGCS) concept specifically the route planning and guidance functions. The route planning functionality generates the optimal surface movement plan for every aircraft. This plan consists of conflict-free optimized routes with associated speed values called four dimensional taxi trajectories (4DT). The 4DT must be generated by dedicated planning systems that support the air traffic controller in their daily work. Several research studies have shown that the implementation of trajectory-based taxi operations mainly depends on the ability of the aircraft to follow the optimal surface movement plan which is still a challenge. The guidance functionality primarily addresses the support of pilots and vehicle drivers equipped with displays for increased situation awareness especially in low visibility conditions. However, ICAO's A-SMGCS manual also states that predetermined taxi speeds have to be maintained so that a timely arrival at the runway holding position and at the stands can be ensured. Autonomous engine-off taxi technologies with electric engines - called eTaxi - is an alternative ground propulsion system (AGPS) that promises to accomplish this performance. At the same time, AGPS are able to reduce the environmental impact, through less noise and emissions, and the economic impact, through less fuel consumption, while taxiing. This paper addresses the research question of how AGPS and trajectory-based taxi operations are interdependent. As a starting point to answer this research question, two conceptual investigations are conducted. First, the trajectory-based taxi operations concept is reviewed. Second, the investigation of necessary ATC procedures to manage aircraft with autonomous engine-off taxi technologies is considered. Both processes have to be considered in order to develop a viable concept of e-taxi.
机译:本文着眼于新开发的用于飞机水面操作的飞机的替代地面推进系统及其与机场塔空中交通管制员的决策支持工具的依赖关系。这两个问题都涉及高级地面运动制导和控制系统(A-SMGCS)概念的功能,特别是路线规划和制导功能。航线规划功能可为每架飞机生成最佳的地面运动计划。该计划包括无冲突的优化路线以及相关的速度值,称为四度滑行轨迹(4DT)。 4DT必须由支持空中交通管制员日常工作的专用计划系统生成。多项研究表明,基于轨迹的滑行操作的实施主要取决于飞机遵循最佳表面运动计划的能力,这仍然是一个挑战。导航功能主要是为配备了显示屏的飞行员和车辆驾驶员提供支持,以增强他们的态势感知能力,尤其是在低能见度条件下。但是,国际民航组织的A-SMGCS手册还指出,必须保持预定的滑行速度,以确保及时到达跑道保持位置和停机位。带有电动发动机的自主发动机滑行滑行技术(称为eTaxi)是一种有望实现这一性能的替代地面推进系统(AGPS)。同时,AGPS可以通过减少滑行时的噪音和排放来减少对环境的影响,并通过减少油耗来减少对经济的影响。本文解决了有关AGPS和基于轨迹的滑行操作如何相互依赖的研究问题。作为回答这个研究问题的起点,进行了两次概念研究。首先,回顾了基于轨迹的出租车运营概念。其次,考虑对必要的空中交通管制程序进行调查,以管理采用自动发动机滑行技术的飞机。为了开发可行的电子出租车概念,必须考虑这两个过程。

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