航空运输物体精度的连续监测

M. Čatloš, P. Kurdel, A. Sedláková, J. Labun, M. Češkovič
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引用次数: 18

摘要

根据未来的目标,当这些空中运输物体(ATO)可以在选定的走廊上飞行时,基于斯洛伐克共和国(SR)复杂环境条件下的危险状态监测来模拟状态也很重要。在适当考虑到领土地形的情况下,确定无法进行遥测控制的残余地区是很重要的。然而,在这个问题上,也有必要考虑到法律框架,它代表了根据空中交通管制政策维持空中交通管制飞行安全的补充管制功能。控制无人机在复杂区域飞行的功能效率设置必须是稳定的。在文章中,稳定性是通过误差分析在给定的横向偏差后,ATO已经切换到自主飞行模式。由于外部环境造成的误差,ATO必须执行精确的飞行进入该区域,并取得飞行任务的成功。例如,它可能涉及飞往山区,在那里确保病人或受到威胁的人的地位是很重要的。将此类飞行在有限山地地形下的求解难度划分为智能自治端口(Sky Control Object Power Environment - SCOPE)文件。任务是在考虑到环境变化的可能性的情况下,覆盖剩余区域,以尽量减少救援在活动走廊中的人员的时间。本文分析的是在自主飞行的精确导航模式下,在走廊本身飞行的基本导航任务,同时假定由无人机携带的惯性导航系统、速度和偏航角多普勒传感器组成的导航系统(NEC)发生错误的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Continual Monitoring of Precision of Aerial Transport Objects
In accordance with the future aims, when these aerial transport objects (ATO) could fly in a selected corridor, it is also important to simulate states based on the status monitoring of dangerous situated in the complex environmental condition of the Slovak Republic (SR). With due regard to the orography of the territory, it is important to locate residual areas, where there is no possibility of their telemetric control. In the given issue, however, it is also necessary to take into account the legal framework representing a supplementary control function of maintaining flight safety of air traffic control in compliance with the ATM policies. The set-up of functional efficiency of controlling the flight of such an ATO in a complex area must be stable. In the article, stability is presented by error analysis at given lateral deviations after the ATO has switched into autonomous flight mode. Due to the errors caused by the external environment, the ATO must perform a precise flight into the area and achieve the success of the flight mission. For example, it may involve a flight into mountain territories, where it is important to secure the patient s status or the person under threat. The laboriousness of solution of such flights in a limited mountain terrain is divided into files of intelligent autonomous ports (Sky Control Object Power Environment – SCOPE). The task is to cover the residual areas for minimizing the time of rescuing persons present in the active corridors taking into account the probability of environmental change. Analysis in the article is the fundamental navigational task of flying in the corridor itself in a precise navigation mode of autonomous flight, while presuming the possibility of error occurrence of the Navigation Ergatic Complex (NEC), the element of which are made up of an inertial navigation system, Doppler sensor of speed and drift angle carried on an unmanned aerial vehicle.
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