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Preliminary Benefits Assessment of Traffic Aware Strategic Aircrew Requests (TASAR)

机译:交通意识战略空勤人员要求(TASAR)的初步效益评估

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While en route, aircrews submit trajectory change requests to air traffic control (ATC) to better meet their objectives including reduced delays, reduced fuel burn, and passenger comfort. Aircrew requests are currently made with limited to no information on surrounding traffic. Consequently, these requests are uninformed about a key ATC objective, ensuring traffic separation, and therefore less likely to be accepted than requests informed by surrounding traffic and that avoids creating conflicts. This paper studies the benefits of providing aircrews with on-board decision support to generate optimized trajectory requests that are probed and cleared of known separation violations prior to issuing the request to ATC. These informed requests are referred to as traffic aware strategic aircrew requests (TASAR) and leverage traffic surveillance information available through Automatic Dependent Surveillance - Broadcast (ADS-B) In capability. Preliminary fast-time simulation results show increased benefits with longer stage lengths since beneficial trajectory changes can be applied over a longer distance. Also, larger benefits were experienced between large hub airports as compared to other airport sizes. On average, an aircraft equipped with TASAR reduced its travel time by about one to four minutes per operation and fuel burn by about 50 to 550 lbs per operation depending on the objective of the aircrew (time, fuel, or weighted combination of time and fuel), class of airspace user, and aircraft type. These preliminary results are based on analysis of approximately one week of traffic in July 2012 and additional analysis is planned on a larger data set to confirm these initial findings.
机译:在途中,机组人员向空中交通管制(ATC)提交航迹更改请求,以更好地实现其目标,包括减少延误,减少燃油消耗和乘客舒适度。目前,机组人员的要求仅限于没有有关周围交通的信息。因此,这些请求未获知有关关键ATC目标的信息,从而确保了流量分离,因此与周围流量通知的请求相比,被接受的可能性较小,并且避免了产生冲突。本文研究了为机组人员提供机上决策支持以生成优化的轨迹请求的好处,该轨迹请求会在向ATC发出请求之前先进行探查并清除已知的分离违规情况。这些通知的请求被称为流量感知战略空勤人员请求(TASAR),并利用通过自动相关监视-广播(ADS-B)功能获得的流量监视信息。初步的快速仿真结果表明,由于可以在更长的距离上应用有益的轨迹变化,因此使用更长的载物台可以增加收益。此外,与其他机场规模相比,大型枢纽机场之间可享受更大的收益。平均而言,根据机组人员的目标(时间,燃料或时间和燃料的加权组合),配备TASAR的飞机每次操作可将其旅行时间减少约1-4分钟,每次操作可将燃料燃烧减少约50至550磅。 ),空域用户类别以及飞机类型。这些初步结果是基于对2012年7月大约一周的流量分析得出的,并计划在更大的数据集上进行进一步分析,以确认这些初步发现。

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