Žilina机场GNSS仪器进近安全性研究

A. Novák, F. Škultéty, M. Bugaj, F. Jůn
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引用次数: 3

摘要

本文的目的是熟悉全球卫星导航系统(GNSS),其在航空中的应用和安全性分析,主要是在仪表进近程序中。此外,提出了系统描述,并在其基础上识别和分析了危害和风险。本文的主要目的是回顾在多种仪器接近过程中系统的安全性,并参考GNSS的未来潜力。今天,商用飞机上安装了各种各样的系统,用于在飞行的不同阶段进行导航。地面无线电导航辅助设备,如VOR/DME或NDB,用于大陆航线和非精确进近操作。精密着陆需要仪表着陆系统(ILS)。这些系统有其局限性;飞机必须遵循预先设定的空中交通路线,这对空中交通流量管理的能力产生不利影响。自由航线空域目前在欧洲使用。它是一个特定的空域,在这个空域中,用户可以在定义的入口点和定义的出口点之间自由规划路线。如今,空中交通发展迅速,造成延误。这就是为什么像GNSS这样的系统如此重要的原因之一。最终,GNSS可以取代所有传统的无线电导航设备,尽管在实现这一目标之前仍有技术、操作和体制问题有待解决。本文介绍了日利纳机场基于GNSS的仪器进近的安全性评价。全球导航卫星系统有许多子系统,这些子系统被称为增强系统。他们每个人都有自己的潜力,优点和缺点。我们将主要关注LZZI的EGNOS+GPS核心卫星系统使用情况。由于我们一直在评估仪器进近在具体机场的安全性,我们将不得不考虑参与执行该程序的所有子系统,例如机场系统、空中交通管制、飞机设备、机组人员和全球导航卫星系统本身。本文使用的方法或指南源自英国民航局的CAP 760。风险评估和减轻过程将通过逻辑上不属于第760章七步骤过程的步骤来介绍。
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Safety Studies on GNSS Instrument Approach at Žilina Airport
The purpose of this paper is the familiarization with the Global Navigation Satellite System (GNSS), its utilization in aviation and analysis of safety, mainly during instrument approach procedures. Further, the system description is presented and on its basis hazards and risks are identified and later analysed. The main objective of this paper is to review the safety of the system during multiple instrument approaches and to refer to the future potential of GNSS. Today a variety of systems are installed on-board of commercial airliners for navigation during the different phases of flight. Ground-based radio navigation aids, such as VOR/DME or NDB, are used for continental en-route and non-precision approach operations. For precision approaches an instrument landing system (ILS) is necessary. These systems have their limitations; aircraft must follow pre-defined air traffic routes which has an unfavourable effect on the capabilities of Air Traffic Flow Management. The Free Route Airspace is currently used in Europe. It is a specified airspace in which users can freely plan a route between a defined entry point and a defined exit point. Nowadays, the air traffic develops rapidly which causes delays. This is one of the reasons why a system such as GNSS is so essential. Ultimately, GNSS could replace all traditional radio navigation aids, even though there are still technical, operational and institutional issues to be resolved before reaching this goal. Our paper describes the safety evaluation of GNSS based instrument approaches at the Zilina airport (LZZI). GNSS has many sub-systems, which are known as augmentation systems. Each of them has their potential, advantages and disadvantages. We will focus mostly on the EGNOS+GPS core satellite system usage at LZZI. Since we have been evaluating the safety of the instrument approach on a concrete airport we will have to consider all sub-systems which take part in performing the procedure, for example airport systems, ATC, aircraft equipment, flight crew and the GNSS system itself. The methodology or guidance used for this paper is derived from the CAP 760 by the UK Civil Aviation Authority. The risk assessment and mitigation process will be presented through steps logically excepted from the CAP 760 seven-step process.
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