Samenvatting
Developing safe automated vehicles that can be proactive, safe, and comfortable in mixed traffic requires improved planning methods that are risk-averse and that account for predictions of the motion of other road users. To consider these criteria, in this article, we propose a non-linear model-predictive trajectory generator scheme, which couples the longitudinal and lateral motion of the vehicle to steer the vehicle with minimal risk, while progressing towards the goal state. The proposed method takes into account the infrastructure, surrounding objects, and predictions of the objects' state through artificial potential-based risk fields included in the cost function of the model-predictive control (MPC) problem. This trajectory generator enables anticipatory maneuvers, i.e., mitigating risk far before any safety-critical intervention would be necessary. The method is proven in several case studies representing both highways- and urban situations. The results show the safe and efficient implementation of the MPC trajectory generator while proving its real-time applicability.
Originele taal-2 | Engels |
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Titel | 2022 IEEE International Conference on Intelligent Transportation Systems (ITSC) |
Uitgeverij | Institute of Electrical and Electronics Engineers |
Pagina's | 1141-1148 |
Aantal pagina's | 8 |
ISBN van elektronische versie | 978-1-6654-6880-0 |
DOI's | |
Status | Gepubliceerd - 1 nov. 2022 |
Evenement | 2022 IEEE 25th International Conference on Intelligent Transportation Systems (ITSC) - Macau, China Duur: 8 okt. 2022 → 12 okt. 2022 Congresnummer: 25 |
Congres
Congres | 2022 IEEE 25th International Conference on Intelligent Transportation Systems (ITSC) |
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Verkorte titel | ITSC 2022 |
Land/Regio | China |
Stad | Macau |
Periode | 8/10/22 → 12/10/22 |
Financiering
Financiers | Financiernummer |
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European Union’s Horizon Europe research and innovation programme | |
European Union’s Horizon Europe research and innovation programme | 861570 |