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Estimating fuel consumption from radar tracks: a validation exercise using FDR and radar tracks from descent trajectories

机译:估算雷达轨道的燃料消耗:使用FDR和雷达轨迹从下降轨迹的验证练习

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Fuel consumption is one of the major considerations for both the impact of aviation in the environment and the cost of operations. This paper assesses the accuracy of a method capable of producing aircraft fuel estimates based on their 4D trajectory timestamps and the weather forecast. Fuel consumption estimates generated for 2448 descents are compared with the flight data recorder (FDR) values provided by the airline. Fuel consumption is estimated by taking the 4D trajectory from two different sources: the FDR system itself and surveillance radar tracks. In both cases, the Base of Aircraft Data (BADA) and a model that fits manufacturers' performance data to polynomial functions are used to represent aircraft performance. Results obtained with the latter show that fuel usage could be estimated with an accuracy of 16 kg (4.8%) using the 4D trajectory as reported by the FDR system and 28 kg (7.8%) using surveillance radar observations. It is also observed that the BADA 3.6 model underestimates the fuel consumption, illustrating the need for an improved performance model in the terminal manoeuvring area. This method could be the cornerstone for the calculation of advanced performance indicators to measure flight efficiency (and environmental impact) in post-operational assessments, since it enables the estimation of the full state vector of an aircraft, including variables that are not explicitly included in the surveillance data (such the fuel, thrust, etc.).
机译:燃料消耗是航空对环境中的影响和运营成本的主要考虑因素之一。本文评估了能够基于其4D轨迹时间戳和天气预报产生飞机燃料估计的方法的准确性。将2448个降序产生的燃料消耗估计与航空公司提供的飞行数据记录器(FDR)值进行比较。通过从两个不同来源拍摄4D轨迹来估计燃料消耗:FDR系统本身和监视雷达轨道。在这两种情况下,飞机数据(BADA)和适合制造商性能数据到多项式函数的模型的基础用于表示飞机性能。后者获得的结果表明,使用FDR系统报告的4D轨迹和28kg(7.8%)使用监控雷达观察,可以估计燃料使用量为16千克(4.8%)。还观察到,巴达3.6模型低估了燃料消耗,说明了在终端操纵区域中改进的性能模型的需要。这种方法可以是用于计算在运营后评估中测量飞行效率(和环境影响)的先进性能指标的基石,因为它能够估计飞机的全状态向量,包括未明确包含在内的变量监控数据(这种燃料,推力等)。

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