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Analysis of advanced Flight Management Systems (FMS), Flight Management Computer (FMC) field observations trials; Standard Instrument Departures

机译:分析先进的飞行管理系统(FMS),飞行管理计算机(FMC)的实地观察试验;标准仪器出发

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The differences in performance of various manufacturers' Flight Management Systems (FMSs) and their associated Flight Management Computers (FMCs) have the potential for significant operational impact on the air traffic control system and as such need to be examined on a recurring basis. Performance-based navigation (PBN) is a fundamental principle for aircraft operations that will facilitate the transition to future airspace systems. A critical element of PBN is the FMS's capability to fly a consistently repeatable and predictable flight path trajectory that will meet the expectations of air traffic control. FMS manufacturers build their systems in accordance with [1] and [2] for area navigation systems, Technical Standard Orders and Advisory Circulars. Area Navigation (RNAV) and Required Navigation Performance (RNP) procedures and routes are published by the Federal Aviation Administration (FAA) according to criteria contained in FAA orders. It is anticipated that the resulting performance of the aircraft FMC will meet the procedure design requirements identified in the FAA criteria. Sometimes, due to the nearly independent development of procedure design criteria and aircraft performance standards, the paths of various aircraft on the same procedure do not coincide and therefore do not match the expectations of the procedure designer. These differences may result from any or all of the following: variations in FMC equipment installed on the aircraft; variations and errors in procedure coding in the FMC navigation database; variations in aircraft-to-FMC interface and associated aircraft performance capabilities; and variations in flight crew training and procedures. The hypothesis of this paper is that the FMCs built by avionics manufacturers and installed as the core of the FMC/FMS combinations in various airframe platforms perform differently and we will attempt to quantify those differences. This paper focuses on FMC performance when flying Standard Instrument-- Departures (SIDs) and their associated waypoints and leg types (path terminators) and combinations as described in [3]. Public instrument procedures flown using RNAV equipment are used as the baseline for measuring the performance variations. Controlled field observations trials were made using twelve FMS test benches and three simulators at seven major FMC manufacturers and two airlines. Analysis of data from the trials confirms differences and the details are presented. The intent of this report is to contribute technical data as a foundation for the acceptance of required navigation performance (RNP) departures.
机译:各个制造商的飞行管理系统(FMS)及其关联的飞行管理计算机(FMC)的性能差异可能会对空中交通管制系统产生重大运营影响,因此需要定期进行检查。基于性能的导航(PBN)是飞机运行的基本原则,它将促进向未来空域系统的过渡。 PBN的一个关键要素是FMS能够飞行始终如一的可重复和可预测的飞行轨迹,从而满足空中交通管制的期望。 FMS制造商根据[1]和[2]的区域导航系统,技术标准订单和咨询通告来构建他们的系统。联邦航空局(FAA)根据FAA订单中包含的标准发布了区域导航(RNAV)和所需的导航性能(RNP)程序和路线。预计飞机FMC的最终性能将满足FAA标准中确定的程序设计要求。有时,由于程序设计标准和飞机性能标准几乎是独立发展的,同一程序上的各种飞机的航路不重合,因此与程序设计者的期望不符。这些差异可能是由于以下任何一项或全部原因造成的:安装在飞机上的FMC设备的变化; FMC导航数据库中过程编码的变化和错误;飞机到FMC界面的变化以及相关的飞机性能;以及机组人员培训和程序的变化。本文的假设是,由航空电子制造商制造并作为各种飞机平台FMC / FMS组合的核心安装的FMC的性能有所不同,我们将尝试量化这些差异。本文重点介绍了使用标准乐器时的FMC性能- -- 出发点(SID)及其相关的航路点和航段类型(路径终止符)及其组合,如[3]中所述。使用RNAV设备飞行的公共仪器程序被用作测量性能变化的基准。在七个主要的FMC制造商和两家航空公司中,使用十二个FMS测试台和三个模拟器进行了受控现场观察试验。对试验数据的分析证实了差异,并提供了详细信息。本报告的目的是提供技术数据,作为接受所需导航性能(RNP)出发的基础。

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