Analysis and Simulation of Lateral Collision Risk under Paired Approach

4区 工程技术 Q1 Mathematics
Fei Lu, Jian Zhang, Haonan Chen, Zichen Chen
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引用次数: 0

Abstract

The paired approach can improve the efficiency of closely spaced parallel runways. Calculating the probability and frequency of horizontal overlap is an indispensable step when evaluating the horizontal collision risk of the paired approach. As the generation of horizontal overlap probability is closely related to horizontal position error, we propose a calculation method of horizontal overlap probability based on position error from the perspective of pilot operation. First, according to the principle of flight mechanics, the attitude adjustment model is established for the horizontal direction of the approach process, and the pilot’s operation model for various position errors is based on the concept of the stochastic process. This attitude adjustment model can replicates the process of the pilot operating the steering column to change the aircraft’s attitude. When combined with the pilot’s operation model, it is possible to simulate the position errors generated during the approach process. Building on this, the horizontal overlapping conditions of two aircraft are analyzed to simulate the horizontal overlap process in the paired approach. The duration and instances of overlap counted and the ratio between these results and the total running time give the overlap probability and frequency. Multiple simulations in MATLAB reveal that higher pilot operating accuracy shortens the time for the aircraft to align with the course, whereas lower accuracy leads to unstable horizontal position errors. Furthermore, the horizontal overlap in paired approaches primarily occurs at the beginning of the procedure, and enhancing the pilot’s operating accuracy does not significantly affect the probability and frequency of horizontal overlap.
成对方法下的侧面碰撞风险分析与模拟
成对进近可以提高间距较近的平行跑道的效率。在评估成对进近的水平碰撞风险时,计算水平重叠概率和频率是不可或缺的步骤。由于水平重叠概率的产生与水平位置误差密切相关,我们从飞行员操作的角度出发,提出了基于位置误差的水平重叠概率计算方法。首先,根据飞行力学原理,建立进近过程中水平方向的姿态调整模型,并根据随机过程的概念建立飞行员对各种位置误差的操作模型。该姿态调整模型可以复制飞行员操作转向柱改变飞机姿态的过程。结合飞行员的操作模型,就可以模拟进近过程中产生的位置误差。在此基础上,分析两架飞机的水平重叠条件,模拟配对进近中的水平重叠过程。通过计算重叠的持续时间和次数,以及这些结果与总运行时间的比率,可以得出重叠概率和频率。在 MATLAB 中进行的多次模拟显示,飞行员操作精度越高,飞机对准航向的时间越短,而精度越低,水平位置误差越不稳定。此外,配对进近中的水平重叠主要发生在程序开始时,提高飞行员的操作精度对水平重叠的概率和频率影响不大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Mathematical Problems in Engineering
Mathematical Problems in Engineering 工程技术-工程:综合
CiteScore
4.00
自引率
0.00%
发文量
2853
审稿时长
4.2 months
期刊介绍: Mathematical Problems in Engineering is a broad-based journal which publishes articles of interest in all engineering disciplines. Mathematical Problems in Engineering publishes results of rigorous engineering research carried out using mathematical tools. Contributions containing formulations or results related to applications are also encouraged. The primary aim of Mathematical Problems in Engineering is rapid publication and dissemination of important mathematical work which has relevance to engineering. All areas of engineering are within the scope of the journal. In particular, aerospace engineering, bioengineering, chemical engineering, computer engineering, electrical engineering, industrial engineering and manufacturing systems, and mechanical engineering are of interest. Mathematical work of interest includes, but is not limited to, ordinary and partial differential equations, stochastic processes, calculus of variations, and nonlinear analysis.
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