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A trajectory optimisation approach for motorcycles

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conference contribution
posted on 2025-08-13, 07:49 authored by Mohammad AbdallahMohammad Abdallah, Peter HubbardPeter Hubbard, James FlemingJames Fleming
<p dir="ltr">Trajectory planning and optimisation for motorcycles is an underdeveloped area in autonomous vehicle research. The Kinematic Bicycle Model (KBM) is popularly studied as a tool for path planning, trajectory optimisation and control in autonomous vehicle applications. However, due to the nonminimum phase properties of motorcycle systems, it is unsuitable as a model for path planning in motorcycles. As such, this paper presents an alternative trajectory planner, that makes use of a reduced order model approximation of the motorcycle dynamics to express the trajectory optimisation problem as a quadratic program that may be efficiently solved. This planner includes the nonminimum phase behaviour of motorcycles and enforces the dynamic constraints needed for safety guarantees. Tracking accuracy is assessed in a detailed non-linear motorcycle simulation, which shows a reduced root mean square error of 0.386m compared to 1.091m when using a planner based on KBM. Successful collision avoidance is also achieved when tracking, unlike when using the KBM planner. This provides a proof of concept for future research into real-time trajectory optimisation and planning for motorcycles.</p>

History

Related Materials

School

  • Mechanical, Electrical and Manufacturing Engineering

Published in

2025 IEEE Intelligent Vehicles Symposium (IV)

Pages

154 - 159

Source

2025 IEEE Intelligent Vehicles Symposium (IV)

Publisher

IEEE

Version

  • AM (Accepted Manuscript)

Rights holder

© IEEE

Publisher statement

This accepted manuscript is made available under the Creative Commons Attribution licence (CC BY) under the IEEE JISC UK green open access agreement.

Publication date

2025-06-22

Copyright date

2025

ISBN

9798331538033; 9798331538040

eISSN

2642-7214

Language

  • en

Location

Cluj-Napoca, Romania

Event dates

22nd June 2025 - 25th June 2025

Depositor

Mr Mohammad Abdallah. Deposit date: 10 August 2025