并行多核近地预警系统的增强功能

David Mueller, Umut Durak
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引用次数: 1

摘要

德国航空航天中心(DLR)目前正在开发一种地形感知和预警系统(TAWS),该系统利用基于模型的异构并行系统应用(ARGO)方法的最坏情况执行时间(WCET)感知并行化。TAWS的基本功能基于霍尼韦尔的增强型近地预警系统(EGPWS)进行建模,该系统安装在DLR的研究飞机ATRA上。此外,在现有能力之外,“增强”功能正在实施,以展示通过使用多核平台并行化提供的可能性,并研究新的方法来提高对控制飞行进入地形(CFIT)事故的保护。在介绍了并行多核TAWS的发展之后,本文描述了利用电子飞行仪表系统(EFIS)显示预测符号的增强功能,该符号表示飞机的未来位置以及可能的地形冲突。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhanced Functions for a Parallel Multicore Ground Proximity Warning System
The German Aerospace Center (DLR) is currently developing a Terrain Awareness and Warning System (TAWS) utilizing the worst case execution time (WCET)-Aware PaRallelization of Model-Based Applications for HeteroGeneOus Parallel Systems (ARGO) approach. The basic functions of the TAWS were modelled based on the Enhanced Ground Proximity Warning System (EGPWS) by Honeywell which is installed in DLR's research aircraft ATRA. Moreover, beyond the existing capabilities, “Enhanced” functions are being implemented in order to demonstrate the possibilities that become available through the use of parallelization for multicore platforms and to investigate new approaches to improve the protection against Controlled Flight into Terrain (CFIT) accidents. After introducing the parallel multicore TAWS development, this paper describes the enhanced functions that make use of the Electronic Flight Instrument System (EFIS) for displaying a predictor symbol that represents the aircraft's future position as well as possible terrain conflicts.
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