An Object Tracking Using a Neuromorphic System Based on Standard RGB Cameras
Author:
Publisher
Springer International Publishing
Link
https://link.springer.com/content/pdf/10.1007/978-3-030-70601-2_333
Reference38 articles.
1. Diamond A, Nowotny T, Schmuker M (2016) Comparing neuromorphic solutions in action: implementing a bio-inspired solution to a benchmark classification task on three parallel-computing platforms. Front Neurosci 9:491
2. Osborn LE, Dragomir A, Betthauser JL et al (2018) Prosthesis with neuromorphic multilayered e-dermis perceives touch and pain. Sci Rob 3:eaat3818
3. Stefano B, Yannick B, Ilaria C et al (2019) A neuromorphic prosthesis to restore communication in neuronal networks. iScience. 19:402–414
4. Delbrück T, Linares-Barranco Be, Culurciello E, Posch C (2010) Activity-driven, event-based vision sensors. In: Proceedings of 2010 IEEE international symposium on circuits and systems, pp. 426–2429. IEEE
5. Brandli C, Berner R, Yang M, Liu S-C, Delbruck T (2014) A 240$$\times $$ 180 130 db 3 $$\mu $$s latency global shutter spatiotemporal vision sensor. IEEE J Solid-State Circ 49:2333–2341
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