Fu, Qinbing, Wang, Huatian, Peng, Jigen and Yue, Shigang (2020) Improved Collision Perception Neuronal System Model with Adaptive Inhibition Mechanism and Evolutionary Learning. IEEE Access, 8 . pp. 108896-108912. ISSN 2169-3536
Full content URL: https://doi.org/10.1109/ACCESS.2020.3001396
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Q.Fu Access_2020_final.pdf - Whole Document Available under License Creative Commons Attribution 4.0 International. 8MB |
Item Type: | Article |
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Item Status: | Live Archive |
Abstract
Accurate and timely perception of collision in highly variable environments is still a challenging problem for artificial visual systems. As a source of inspiration, the lobula giant movement detectors (LGMDs) in locust’s visual pathways have been studied intensively, and modelled as quick collision detectors against challenges from various scenarios including vehicles and robots. However, the state-of-the-art LGMD models have not achieved acceptable robustness to deal with more challenging scenarios like the various vehicle driving scenes, due to the lack of adaptive signal processing mechanisms. To address this problem, we propose an improved neuronal system model, called LGMD+, that is featured by novel modelling of spatiotemporal inhibition dynamics with biological plausibilities including 1) lateral inhibitionswithglobalbiasesdefinedbyavariantofGaussiandistribution,spatially,and2)anadaptivefeedforward inhibition mediation pathway, temporally. Accordingly, the LGMD+ performs more effectively to detect merely approaching objects threatening head-on collision risks by appropriately suppressing motion distractors caused by vibrations, near-miss or approaching stimuli with deviations from the centre view. Through evolutionary learning with a systematic dataset of various crash and non-collision driving scenarios, the LGMD+ shows improved robustness outperforming the previous related methods. After evolution, its computational simplicity, flexibility and robustness have also been well demonstrated by real-time experiments of autonomous micro-mobile robots.
Keywords: | lobula giant movement detector, neuronal system model, collision perception, adaptive inhibition, evolutionary learning, highly variable environment |
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Subjects: | G Mathematical and Computer Sciences > G400 Computer Science |
Divisions: | College of Science > School of Computer Science |
ID Code: | 42131 |
Deposited On: | 08 Sep 2020 11:59 |
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