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Surrounding traffic complexity analysis for efficient and stable conflict resolution

机译:周边交通复杂性分析,可有效,稳定地解决冲突

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The constant increase in air traffic demand increases a probability of the separation minima infringements in certain areas as a consequence of increased traffic density. The Annual Safety Report 2016 reports that in recent years the number of infringements, measured per million flight hours, had been increased at a lower rate (Eurocontrol, 2018). However, this level of infringements still generates a continuous pressure on the air traffic control (ATC) system and seeks for more control resources ready to tactically solve potential conflicts, while increasing at the same time the operational costs. Considering present air traffic management (ATM) trade-off criteria: increased airspace capacity and traffic efficiency but reducing the cost while preserving safety, new services must be designed to distribute the separation management ATC task loads among other actors. Based on the Single European Sky Air Traffic Management Research and Next Generation Air Transportation System initiatives, this paper proposes an innovative separation management service to shift the completely centralized tactical ATC interventions to more efficient decentralized tactical operations relying on an advanced surrounding traffic analysis tool, to preserve the safety indicators while considering the operational efficiency. A developed methodology for the proposed service is an application-oriented, trying to respond to characteristics and requirements of the current operational environment. The paper further analysis the traffic complexity taking into consideration the so-called domino effect, i.e. a number of the surrounding aircraft causally involved in the separation management service by the means of identification of the spatiotemporal interdependencies between them and the conflicting aircraft. This complexity is driven by the interdependencies structure and expressed as a time-criticality in quantifying the total number of the system solutions, that varies over time as the aircraft are approaching to each other. The results from two randomly selected ecosystem scenarios, extracted from a simulated traffic, illustrate different avoidance capacities for a given look-ahead time and the system solutions counts, that in discrete moments reach zero value.
机译:由于交通密度的增加,空中交通需求的不断增加增加了某些地区最小分离违法行为的可能性。 《 2016年年度安全报告》报告说,近年来,以百万飞行小时数衡量的侵权数量以较低的速度增加(Eurocontrol,2018)。但是,这种侵权程度仍然对空中交通管制(ATC)系统产生持续的压力,并寻求更多的控制资源以战术上解决潜在冲突,同时增加运营成本。考虑到当前空中交通管理(ATM)的权衡标准:增加空域容量和交通效率,但在保持安全性的同时降低成本,必须设计新的服务以在其他参与者之间分配隔离管理ATC任务负荷。基于“单一欧洲空中空中交通管理研究”和“下一代空中运输系统”计划,本文提出了一项创新的隔离管理服务,以将完全集中的战术ATC干预转变为依靠先进的周围交通分析工具进行的更高效的分散战术行动,从而在考虑运营效率的同时保留安全指标。针对提议的服务开发的方法是面向应用程序的,试图响应当前操作环境的特征和要求。本文进一步考虑了所谓的多米诺骨牌效应(Domino effect)来分析交通复杂性,即通过识别飞机与冲突飞机之间的时空相互依赖关系,使飞机在间隔管理服务中因果关系。这种复杂性是由相互依存关系结构驱动的,并表示为量化系统解决方案总数时的时间紧迫性,随着飞机相互接近,该解决方案随时间而变化。从模拟交通中提取的两个随机选择的生态系统情景的结果说明了在给定的预见时间内不同的回避能力和系统解决方案的数量,在离散时刻达到零值。

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