Department of Air Transport Management, Faculty of Aeronautics, Technical University of Kosice, 041 21 Kosice, Slovakia.
Transport Authority, Civil Aviation Division, Airworthiness Department, M.R.Štefánik Airport (BTS), 823 05 Bratislava, Slovakia.
Int J Environ Res Public Health. 2020 Feb 28;17(5):1550. doi: 10.3390/ijerph17051550.
Accurate navigation systems allow us to optimize the trajectory of flying objects and thus solve environmental problems in aviation and their impact on public health. In this paper, we present one of the methods of assessment of accuracy and resistance to interference of distance-measuring equipment (DME). By using computer technology, the method enables us to determine the potential but also the real error measuring the distance of the flying object from DME. The credibility of the respective results of the solution on the task of DME optimal rangefinder synthesis depends on the accuracy of the previous data used, i.e., mathematical models of the respective flying objects flight dynamics, useful signals, and their parameters and interference. DME systems have an impact on air transport safety, and therefore the impact of interference on their operation must be investigated.
精确的导航系统使我们能够优化飞行物体的轨迹,从而解决航空领域的环境问题及其对公共健康的影响。在本文中,我们介绍了一种评估测距设备(DME)的精度和抗干扰能力的方法。通过使用计算机技术,该方法使我们能够确定测量飞行物体与 DME 之间距离的潜在误差和实际误差。解决 DME 最佳测距仪综合任务的各个结果的可信度取决于所使用的先前数据的准确性,即各自飞行物体飞行动力学的数学模型、有用信号及其参数和干扰。DME 系统对空中运输安全有影响,因此必须研究干扰对其运行的影响。