Jing, Pengfei, Tang, Q., Du, Y., Xue, L., Luo, X., Wang, T., Nie, S., and Wu, S. Too Good to Be Safe: Tricking Lane Detection in Autonomous Driving with Crafted Perturbations. Retrieved from https://par.nsf.gov/biblio/10248843. Proceedings of USENIX Security Symposium .
Jing, Pengfei, Tang, Q., Du, Y., Xue, L., Luo, X., Wang, T., Nie, S., & Wu, S. Too Good to Be Safe: Tricking Lane Detection in Autonomous Driving with Crafted Perturbations. Proceedings of USENIX Security Symposium, (). Retrieved from https://par.nsf.gov/biblio/10248843.
Jing, Pengfei, Tang, Q., Du, Y., Xue, L., Luo, X., Wang, T., Nie, S., and Wu, S.
"Too Good to Be Safe: Tricking Lane Detection in Autonomous Driving with Crafted Perturbations". Proceedings of USENIX Security Symposium (). Country unknown/Code not available. https://par.nsf.gov/biblio/10248843.
@article{osti_10248843,
place = {Country unknown/Code not available},
title = {Too Good to Be Safe: Tricking Lane Detection in Autonomous Driving with Crafted Perturbations},
url = {https://par.nsf.gov/biblio/10248843},
abstractNote = {},
journal = {Proceedings of USENIX Security Symposium},
author = {Jing, Pengfei and Tang, Q. and Du, Y. and Xue, L. and Luo, X. and Wang, T. and Nie, S. and Wu, S.},
editor = {null}
}
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