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Estimation of Aircraft Taxi-out Fuel Burn using Flight Data Recorder Archives

机译:使用飞行数据记录器档案估算飞机滑行燃油消耗

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The taxi-out phase of a flight accounts for a significant fraction of total fuel burn for aircraft. In addition, surface fuel burn is also a major contributor to CO_2 emissions in the vicinity of airports. It is therefore desirable to have accurate estimates of fuel consumption on the ground. This paper builds a model for estimation of on-ground fuel consumption of an aircraft, given its surface trajectory. Flight Data Recorder archives are used for this purpose. The taxi-out fuel burn is modeled as a linear function of several factors including the taxi-out time, number of stops, number of turns, and number of acceleration events. The statistical significance of each potential factor is investigated. The parameters of the model are estimated using least-squares regression. Since these parameters are estimated using data from operational aircraft, they provide more accurate estimates of fuel burn than methods that use idealized physical models of fuel consumption based on aircraft velocity profiles, or the baseline fuel consumption estimates provided by the International Civil Aviation Organization. Our analysis shows that in addition to the total taxi time, the number of acceleration events is a significant factor in determining taxi fuel consumption.
机译:飞行的滑行阶段占飞机总燃料消耗的很大一部分。此外,地表燃料燃烧也是导致机场附近CO_2排放的主要因素。因此,需要对地面上的燃料消耗进行准确的估计。在给定飞机表面轨迹的情况下,本文建立了一个模型来估算飞机的地面燃油消耗。 Flight Data Recorder存档用于此目的。滑行燃油消耗被建模为几个因素的线性函数,包括滑行时间,停止次数,转弯次数和加速事件的次数。研究了每个潜在因素的统计显着性。使用最小二乘回归估计模型的参数。由于这些参数是使用运行中的飞机的数据估算的,因此与使用基于飞机速度曲线或国际民用航空组织提供的基准油耗估算值的理想化油耗物理模型的方法相比,它们可提供更准确的油耗估算。我们的分析表明,除了滑行总时间外,加速事件的数量也是决定滑行油耗的重要因素。

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