Road Slope Prediction and Vehicle Dynamics Control for Autonomous Vehicles
Gautam Shetty, Sabir Hossain, Chuan Hu, Xianke Lin

TL;DR
This paper reviews methods for estimating road slope using perception sensors in autonomous vehicles and introduces a roll control system that enhances safety, especially for high-center-of-gravity vehicles, by integrating slope prediction with rollover prevention.
Contribution
It presents a comprehensive review of road slope estimation techniques and proposes an innovative roll control system that combines slope prediction with rollover prevention for improved safety.
Findings
Road slope estimation improves vehicle control accuracy.
Integrated slope prediction enhances rollover prevention.
New system benefits high-center-of-gravity vehicles.
Abstract
Autonomous vehicles can enhance overall performance and implement safety measures in ways that are impossible with conventional automobiles. These functions are executed through vehicle control systems, which have been the subject of considerable research. Autonomous cars have a distinct advantage as they possess various perception sensors that can predict road surface conditions and other phenomena ahead of time. Many modern automotive control systems treat the road slope as a constant and do not account for changes in the road profile in their vehicle models. As a result, vehicle states may be miscalculated, which, in the worst-case scenario, may result in accidents. This is particularly true for high center-of-gravity vehicles like trailers and delivery trucks. With the help of perception sensors in autonomous vehicles, a road slope estimation system can be developed to aid these…
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Taxonomy
TopicsVehicle Dynamics and Control Systems · Soil Mechanics and Vehicle Dynamics · Transportation Safety and Impact Analysis
