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Impact of Trajectories’ Uncertainty in Existing ATC Complexity Methodologies and Metrics for DAC and FCA SESAR Concepts

机译:航迹不确定性对DAC和FCA SESAR概念的现有ATC复杂性方法和度量标准的影响

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The most relevant SESAR 2020 solutions dealing with future Capacity Management processes are Dynamic Airspace Configuration (DAC) and Flight Centric ATC (FCA). Both concepts, DAC and FCA, rely on traffic flow complexity assessment. For this reason, complexity assessments processes, methods and metrics, become one of the main constraints to deal with the growing demand and increasing airspace capacity. The aim of this work is to identify the influence of trajectories’ uncertainty in the quality of the predictions of complexity of traffic demand and the effectiveness of Demand Capacity Balance (DCB) airspace management processes, in order to overcome the limitations of existing complexity assessment approaches to support Capacity Management processes in a Trajectory-Based Operations (TBO) environment. This paper presents research conducted within COTTON project, sponsored by the SESAR Joint Undertaking and EU’s Horizon 2020 research and innovation program. The main objective is to deliver innovative solutions to maximize the performance of the Capacity Management procedures based on information in a TBO environment.
机译:SESAR 2020与未来容量管理流程最相关的解决方案是动态空域配置(DAC)和以飞行为中心的ATC(FCA)。 DAC和FCA这两个概念都依赖于业务流复杂性评估。因此,复杂性评估过程,方法和指标成为应对日益增长的需求和空域容量不断增长的主要限制之一。这项工作的目的是确定轨迹不确定性对交通需求复杂性预测质量和需求容量平衡(DCB)空域管理流程有效性的影响,以克服现有复杂性评估方法的局限性在基于轨迹的运营(TBO)环境中支持能力管理流程。本文介绍了由SESAR联合事业和欧盟的Horizo​​n 2020研究与创新计划赞助的COTTON项目内进行的研究。主要目标是根据TBO环境中的信息提供创新的解决方案,以最大化容量管理程序的性能。

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