计算机科学
制动系统
适应(眼睛)
自适应控制
自适应算法
控制工程
自适应系统
钥匙(锁)
面子(社会学概念)
预警系统
控制理论(社会学)
工程类
实时计算
开发(拓扑)
汽车工程
避碰
算法
碰撞
模拟
车辆动力学
作者
Viktor V. Petin,Andrey Keller,С. С. Шадрин,Daria Makarova,Akop V. Antonyan,Yury Furletov
标识
DOI:10.4271/10-10-01-0008
摘要
<div>Automatic emergency braking (AEB) systems are crucial for road safety but often face performance challenges in complex road and climatic conditions. This study aims to enhance AEB effectiveness by developing a novel adaptive algorithm that dynamically adjusts braking parameters. The core of the contribution is a refined mathematical model that incorporates vehicle-specific correction coefficients and a real-time prediction of the road–tire friction coefficient. Furthermore, the algorithm features a unique driver-style adaptation module to optimize warning times. The developed system was functionally tested on a vehicle prototype in scenarios including dry, wet, and snow-covered surfaces. Results demonstrate that the adaptive algorithm significantly improves collision avoidance performance compared to a non-adaptive baseline, particularly on low-friction surfaces, without introducing excessive false interventions. The study concludes that the proposed adaptive approach is a vital step toward all-weather capable AEB systems.</div>
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