


default search action
Wei Xiao 0003
Person information
- affiliation: Boston University, Division of Systems Engineering, Brookline, MA, USA
Other persons with the same name
- Wei Xiao — disambiguation page
- Wei Xiao 0001
— Amazon, AWS AI, Seattle, WA, USA (and 2 more) - Wei Xiao 0002 — Shenzhen Lingxi Artificial Intelligence Company Ltd., China (and 1 more)
Other persons with a similar name
- Xiaowei Huang (aka: Xiao-Wei Huang) — disambiguation page
- Xiaowei Li (aka: Xiao-Wei Li) — disambiguation page
- Weixiao Meng 0001
(aka: Wei-Xiao Meng 0001) — Harbin Institute of Technology, Communication Research Center, China - Xiaowei Sun (aka: Xiao-Wei Sun, Xiao Wei Sun) — disambiguation page
- Xiao Wei — disambiguation page
- Xiaohui Wei (aka: Xiao-Hui Wei) — disambiguation page
- Xiaoyong Wei (aka: Xiao-Yong Wei)
- Xiao Wei 0002
— Shanghai Institute of Technology, China (and 1 more) - Xiaowei Xu (aka: Xiao-Wei Xu) — disambiguation page
- Xiao-Wei Zhang
- show all similar names
SPARQL queries 
Refine list

refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2026
[j16]Xinyue Xu
, Wei Xiao
, Steven Ceron
:
Navigation of Robotic Swarmalators With Dynamics and Constraints. IEEE Robotics Autom. Lett. 11(2): 1066-1073 (2026)
[i55]Kiwan Wong, Wei Xiao, Daniela Rus:
PoSafeNet: Safe Learning with Poset-Structured Neural Nets. CoRR abs/2601.22356 (2026)
[i54]Wei Xiao, Christos G. Cassandras, Anni Li:
Robust Taylor-Lagrange Control for Safety-Critical Systems. CoRR abs/2602.20076 (2026)
[i53]Thanh Q. Tran, Arun Verma, Kiwan Wong, Bryan Kian Hsiang Low, Daniela Rus, Wei Xiao:
BarrierSteer: LLM Safety via Learning Barrier Steering. CoRR abs/2602.20102 (2026)
[i52]Yingqing Chen, Christos G. Cassandras, Wei Xiao, Anni Li:
Exact-Time Safety Recovery using Time-Varying Control Barrier Functions with Optimal Barrier Tracking. CoRR abs/2603.19119 (2026)
[i51]Kiwan Wong, Maximillian Stölzle, Wei Xiao, Daniela Rus:
A Closed-Form CLF-CBF Controller for Whole-Body Continuum Soft Robot Collision Avoidance. CoRR abs/2603.19424 (2026)
[i50]Anni Li, Yingqing Chen, Christos G. Cassandras, Wei Xiao:
Finite-time Convergent Control Barrier Functions with Feasibility Guarantees. CoRR abs/2603.22445 (2026)- 2025
[j15]Kiwan Wong
, Maximilian Stölzle
, Wei Xiao
, Cosimo Della Santina
, Daniela Rus
, Gioele Zardini
:
Contact-Aware Safety in Soft Robots Using High-Order Control Barrier and Lyapunov Functions. IEEE Robotics Autom. Lett. 10(12): 12485-12492 (2025)
[c43]Yi-Hsuan Chen, Shuo Liu, Wei Xiao, Calin Belta, Michael Otte:
Control Barrier Functions via Minkowski Operations for Safe Navigation among Polytopic Sets. CDC 2025: 4481-4488
[c42]Wei Xiao, Tsun-Hsuan Wang, Chuang Gan, Ramin M. Hasani, Mathias Lechner, Daniela Rus:
SafeDiffuser: Safe Planning with Diffusion Probabilistic Models. ICLR 2025
[c41]Wei Xiao, Tsun-Hsuan Wang, Chuang Gan, Daniela Rus:
ABNet: Adaptive explicit-Barrier Net for Safe and Scalable Robot Learning. ICML 2025
[c40]Alejandro Gonzalez-Garcia, Wei Xiao, Wei Wang, Alejandro Astudillo, Wilm Decré, Jan Swevers, Carlo Ratti, Daniela Rus:
Safe Motion Planning and Control Using Predictive and Adaptive Barrier Methods for Autonomous Surface Vessels. IROS 2025: 5291-5298
[i49]Shuo Liu, Wei Xiao, Calin A. Belta:
Auxiliary-Variable Adaptive Control Barrier Functions. CoRR abs/2502.15026 (2025)
[i48]Shuo Liu, Wei Xiao, Calin A. Belta:
Ensuring Safe and Smooth Control in Safety-Critical Systems via Filtered Control Barrier Functions. CoRR abs/2503.23267 (2025)
[i47]Yi-Hsuan Chen, Shuo Liu, Wei Xiao, Calin Belta, Michael Otte:
Control Barrier Functions via Minkowski Operations for Safe Navigation among Polytopic Sets. CoRR abs/2504.00364 (2025)
[i46]Kiwan Wong, Maximilian Stölzle, Wei Xiao, Cosimo Della Santina, Daniela Rus, Gioele Zardini:
Contact-Aware Safety in Soft Robots Using High-Order Control Barrier and Lyapunov Functions. CoRR abs/2505.03841 (2025)
[i45]Alejandro Gonzalez-Garcia, Wei Xiao, Wei Wang, Alejandro Astudillo, Wilm Decré, Jan Swevers, Carlo Ratti, Daniela Rus:
Safe Motion Planning and Control Using Predictive and Adaptive Barrier Methods for Autonomous Surface Vessels. CoRR abs/2510.01357 (2025)
[i44]Shuo Liu, Wei Xiao, Calin A. Belta:
Sampling-Aware Control Barrier Functions for Safety-Critical and Finite-Time Constrained Control. CoRR abs/2511.11897 (2025)
[i43]Shuo Liu, Wenliang Liu, Wei Xiao, Calin A. Belta:
Learning Robust and Correct Controllers Guided by Feasibility-Aware Signal Temporal Logic via BarrierNet. CoRR abs/2512.06973 (2025)- 2024
[j14]Wei Xiao
, Anni Li, Christos G. Cassandras, Calin Belta
:
Toward model-free safety-critical control with humans in the loop. Annu. Rev. Control. 57: 100944 (2024)
[j13]Wei Xiao
, Christos G. Cassandras:
Safety-critical control for autonomous multi-agent systems. Annu. Rev. Control. 57: 100953 (2024)
[j12]Ehsan Sabouni, Christos G. Cassandras, Wei Xiao, Nader Meskin:
Optimal control of connected automated vehicles with event/self-triggered control barrier functions. Autom. 162: 111530 (2024)
[c39]Anni Li, Christos G. Cassandras, Wei Xiao:
Safe Optimal Interactions Between Automated and Human-Driven Vehicles in Mixed Traffic with Event-Triggered Control Barrier Functions. ACC 2024: 1455-1460
[c38]Wei Xiao, Christos G. Cassandras:
Decentralized Optimal Merging Control for Mixed Traffic with Vehicle Inference. ACC 2024: 1468-1473
[c37]Shuo Liu
, Wei Xiao, Calin Belta:
Feasibility-Guaranteed Safety-Critical Control with Applications to Heterogeneous Platoons. CDC 2024: 8066-8073
[c36]Wei Xiao, Tsun-Hsuan Wang, Daniela Rus:
Robust and Non-conservative Control Barrier Functions for Stochastic Systems with Arbitrary Relative Degree. CDC 2024: 8086-8091
[c35]Shuo Liu
, Wei Xiao, Calin A. Belta:
Auxiliary-Variable Adaptive Control Lyapunov Barrier Functions for Spatio-Temporally Constrained Safety-Critical Applications. CDC 2024: 8098-8104
[c34]Wei Wang
, Wei Xiao, Alejandro Gonzalez-Garcia
, Jan Swevers, Carlo Ratti, Daniela Rus:
Robust Model Predictive Control with Control Barrier Functions for Autonomous Surface Vessels. ICRA 2024: 6089-6095
[c33]Tsun-Hsuan Wang, Alaa Maalouf, Wei Xiao, Yutong Ban, Alexander Amini, Guy Rosman, Sertac Karaman, Daniela Rus:
Drive Anywhere: Generalizable End-to-end Autonomous Driving with Multi-modal Foundation Models. ICRA 2024: 6687-6694
[c32]Steven Ceron, Wei Xiao, Daniela Rus:
Reciprocal and Non-Reciprocal Swarmalators with Programmable Locomotion and Formations for Robot Swarms. ICRA 2024: 12233-12239
[c31]Zach J. Patterson
, Wei Xiao, Emily R. Sologuren, Daniela Rus:
Safe Control for Soft-Rigid Robots with Self-Contact Using Control Barrier Functions. RoboSoft 2024: 151-156
[i42]H. M. Sabbir Ahmad, Ehsan Sabouni, Akua Dickson, Wei Xiao, Christos G. Cassandras, Wenchao Li:
Secure Control of Connected and Automated Vehicles Using Trust-Aware Robust Event-Triggered Control Barrier Functions. CoRR abs/2401.02306 (2024)
[i41]Wei Xiao, Tsun-Hsuan Wang, Daniela Rus:
ABNet: Attention BarrierNet for Safe and Scalable Robot Learning. CoRR abs/2406.13025 (2024)
[i40]Huy-Dung Nguyen, Anass Bairouk, Mirjana Maras, Wei Xiao, Tsun-Hsuan Wang, Patrick Chareyre, Ramin M. Hasani, Marc Blanchon, Daniela Rus:
Human Insights Driven Latent Space for Different Driving Perspectives: A Unified Encoder for Efficient Multi-Task Inference. CoRR abs/2409.10095 (2024)
[i39]Fouad Makiyeh, Mark Bastourous, Anass Bairouk, Wei Xiao, Mirjana Maras, Tsun-Hsuan Wang, Marc Blanchon, Ramin M. Hasani, Patrick Chareyre, Daniela Rus:
Optical Flow Matters: an Empirical Comparative Study on Fusing Monocular Extracted Modalities for Better Steering. CoRR abs/2409.12716 (2024)- 2023
[j11]Makram Chahine
, Roya Firoozi
, Wei Xiao
, Mac Schwager
, Daniela Rus
:
Intention Communication and Hypothesis Likelihood in Game-Theoretic Motion Planning. IEEE Robotics Autom. Lett. 8(3): 1223-1230 (2023)
[j10]Wei Xiao
, Calin Belta
, Christos G. Cassandras
:
Event-Triggered Control for Safety-Critical Systems With Unknown Dynamics. IEEE Trans. Autom. Control. 68(7): 4143-4158 (2023)
[j9]Kaiyuan Xu
, Christos G. Cassandras
, Wei Xiao
:
Decentralized Time and Energy-Optimal Control of Connected and Automated Vehicles in a Roundabout With Safety and Comfort Guarantees. IEEE Trans. Intell. Transp. Syst. 24(1): 657-672 (2023)
[j8]Wei Xiao
, Tsun-Hsuan Wang
, Ramin M. Hasani, Makram Chahine
, Alexander Amini
, Xiao Li
, Daniela Rus
:
BarrierNet: Differentiable Control Barrier Functions for Learning of Safe Robot Control. IEEE Trans. Robotics 39(3): 2289-2307 (2023)
[c30]Ehsan Sabouni, H. M. Sabbir Ahmad, Wei Xiao, Christos G. Cassandras, Wenchao Li:
Optimal Control of Connected Automated Vehicles with Event-Triggered Control Barrier Functions: a Test Bed for Safe Optimal Merging. CCTA 2023: 321-326
[c29]Wei Xiao, Ross E. Allen, Daniela Rus:
Safe Neural Control for Non-Affine Control Systems with Differentiable Control Barrier Functions. CDC 2023: 3366-3371
[c28]Wenliang Liu, Wei Xiao, Calin Belta
:
Learning Robust and Correct Controllers from Signal Temporal Logic Specifications Using BarrierNet. CDC 2023: 7049-7054
[c27]Shuo Liu
, Wei Xiao, Calin A. Belta
:
Auxiliary- Variable Adaptive Control Barrier Functions for Safety Critical Systems. CDC 2023: 8602-8607
[c26]Tsun-Hsuan Wang, Wei Xiao, Tim Seyde, Ramin M. Hasani, Daniela Rus:
Measuring Interpretability of Neural Policies of Robots with Disentangled Representation. CoRL 2023: 602-641
[c25]Wei Xiao, Christos G. Cassandras, Calin A. Belta
:
Learning Feasibility Constraints for Control Barrier Functions. ECC 2023: 1-6
[c24]Wei Xiao, Tsun-Hsuan Wang, Ramin M. Hasani, Mathias Lechner, Yutong Ban, Chuang Gan, Daniela Rus:
On the Forward Invariance of Neural ODEs. ICML 2023: 38100-38124
[c23]Ross E. Allen, Wei Xiao, Daniela Rus:
Learned Risk Metric Maps for Kinodynamic Systems. ICRA 2023: 961-967
[c22]Makram Chahine, Roya Firoozi, Wei Xiao, Mac Schwager
, Daniela Rus:
Local Non-Cooperative Games with Principled Player Selection for Scalable Motion Planning. IROS 2023: 880-887
[c21]H. M. Sabbir Ahmad, Ehsan Sabouni, Wei Xiao, Christos G. Cassandras, Wenchao Li
:
Trust-Aware Resilient Control and Coordination of Connected and Automated Vehicles. ITSC 2023: 4309-4314
[c20]Tsun-Hsuan Wang, Wei Xiao, Makram Chahine, Alexander Amini, Ramin M. Hasani, Daniela Rus:
Learning Stability Attention in Vision-based End-to-end Driving Policies. L4DC 2023: 1099-1111
[c19]Mathias Lechner, Lianhao Yin, Tim Seyde, Tsun-Hsuan Johnson Wang, Wei Xiao, Ramin M. Hasani, Joshua Rountree, Daniela Rus:
Gigastep - One Billion Steps per Second Multi-agent Reinforcement Learning. NeurIPS 2023
[c18]Siyuan Zhou, Yilun Du, Shun Zhang, Mengdi Xu, Yikang Shen, Wei Xiao, Dit-Yan Yeung, Chuang Gan:
Adaptive Online Replanning with Diffusion Models. NeurIPS 2023
[c17]H. M. Sabbir Ahmad, Ehsan Sabouni, Wei Xiao, Christos G. Cassandras, Wenchao Li
:
Evaluations of Cyber Attacks on Cooperative Control of Connected and Autonomous Vehicles at Bottleneck Points. VehicleSec 2023
[i38]Ross E. Allen, Wei Xiao, Daniela Rus:
Learned Risk Metric Maps for Kinodynamic Systems. CoRR abs/2302.14803 (2023)
[i37]Wei Xiao, Christos G. Cassandras, Calin A. Belta
:
Learning Feasibility Constraints for Control Barrier Functions. CoRR abs/2303.09403 (2023)
[i36]Shuo Liu, Wei Xiao, Calin A. Belta
:
Auxiliary-Adaptive Control Barrier Functions for Safety Critical Systems. CoRR abs/2304.00372 (2023)
[i35]Tsun-Hsuan Wang, Wei Xiao, Makram Chahine, Alexander Amini, Ramin M. Hasani, Daniela Rus:
Learning Stability Attention in Vision-based End-to-end Driving Policies. CoRR abs/2304.02733 (2023)
[i34]Wenliang Liu, Wei Xiao, Calin Belta
:
Learning Robust and Correct Controllers from Signal Temporal Logic Specifications Using BarrierNet. CoRR abs/2304.06160 (2023)
[i33]H. M. Sabbir Ahmad, Ehsan Sabouni, Wei Xiao, Christos G. Cassandras, Wenchao Li:
Trust-Aware Resilient Control and Coordination of Connected and Automated Vehicles. CoRR abs/2305.16818 (2023)
[i32]Wei Xiao, Tsun-Hsuan Wang, Chuang Gan, Daniela Rus:
SafeDiffuser: Safe Planning with Diffusion Probabilistic Models. CoRR abs/2306.00148 (2023)
[i31]Ehsan Sabouni, H. M. Sabbir Ahmad, Wei Xiao, Christos G. Cassandras, Wenchao Li:
Optimal Control of Connected Automated Vehicles with Event-Triggered Control Barrier Functions: a Test Bed for Safe Optimal Merging. CoRR abs/2306.01871 (2023)
[i30]Wei Xiao, Ross E. Allen, Daniela Rus:
Safe Neural Control for Non-Affine Control Systems with Differentiable Control Barrier Functions. CoRR abs/2309.04492 (2023)
[i29]Shuo Liu, Wei Xiao, Calin A. Belta
:
Feasibility-Guaranteed Safety Critical Control with Applications to Heterogeneous Platoons. CoRR abs/2310.00238 (2023)
[i28]Anni Li, Christos G. Cassandras, Wei Xiao:
Safe Optimal Interactions Between Automated and Human-Driven Vehicles in Mixed Traffic with Event-triggered Control Barrier Functions. CoRR abs/2310.00534 (2023)
[i27]Siyuan Zhou, Yilun Du, Shun Zhang, Mengdi Xu, Yikang Shen, Wei Xiao, Dit-Yan Yeung, Chuang Gan:
Adaptive Online Replanning with Diffusion Models. CoRR abs/2310.09629 (2023)
[i26]Makram Chahine, Roya Firoozi, Wei Xiao, Mac Schwager, Daniela Rus:
Local Non-Cooperative Games with Principled Player Selection for Scalable Motion Planning. CoRR abs/2310.12958 (2023)
[i25]Tsun-Hsuan Wang, Alaa Maalouf, Wei Xiao, Yutong Ban, Alexander Amini, Guy Rosman, Sertac Karaman, Daniela Rus:
Drive Anywhere: Generalizable End-to-end Autonomous Driving with Multi-modal Foundation Models. CoRR abs/2310.17642 (2023)
[i24]Zach J. Patterson
, Wei Xiao, Emily R. Sologuren, Daniela Rus:
Safe Control for Soft-Rigid Robots with Self-Contact using Control Barrier Functions. CoRR abs/2311.03189 (2023)- 2022
[j7]Wei Xiao, Calin A. Belta
, Christos G. Cassandras:
Sufficient conditions for feasibility of optimal control problems using Control Barrier Functions. Autom. 135: 109960 (2022)
[j6]Wei Xiao
, Calin Belta
, Christos G. Cassandras
:
Adaptive Control Barrier Functions. IEEE Trans. Autom. Control. 67(5): 2267-2281 (2022)
[j5]Wei Xiao
, Calin Belta
:
High-Order Control Barrier Functions. IEEE Trans. Autom. Control. 67(7): 3655-3662 (2022)
[j4]Huile Xu
, Wei Xiao
, Christos G. Cassandras
, Yi Zhang
, Li Li
:
A General Framework for Decentralized Safe Optimal Control of Connected and Automated Vehicles in Multi-Lane Signal-Free Intersections. IEEE Trans. Intell. Transp. Syst. 23(10): 17382-17396 (2022)
[c16]Wei Xiao, Christos G. Cassandras, Calin A. Belta
, Daniela Rus:
Control Barrier Functions for Systems with Multiple Control Inputs. ACC 2022: 2221-2226
[c15]Kaiyuan Xu, Wei Xiao, Christos G. Cassandras:
Feasibility Guaranteed Traffic Merging Control Using Control Barrier Functions. ACC 2022: 2309-2314
[i23]Wei Xiao, Tsun-Hsuan Wang, Makram Chahine, Alexander Amini, Ramin M. Hasani, Daniela Rus:
Differentiable Control Barrier Functions for Vision-based End-to-End Autonomous Driving. CoRR abs/2203.02401 (2022)
[i22]Kaiyuan Xu, Wei Xiao, Christos G. Cassandras:
Feasibility Guaranteed Traffic Merging Control Using Control Barrier Functions. CoRR abs/2203.04348 (2022)
[i21]Wei Xiao, Christos G. Cassandras, Calin A. Belta
, Daniela Rus:
Control Barrier Functions for Systems with Multiple Control Inputs. CoRR abs/2203.07978 (2022)
[i20]Ehsan Sabouni, Christos G. Cassandras, Wei Xiao, Nader Meskin:
Optimal Control of Connected Automated Vehicles with Event-Triggered Control Barrier Functions. CoRR abs/2203.12089 (2022)
[i19]Nader Meskin, Ehsan Sabouni, Wei Xiao, Christos G. Cassandras:
Self-Triggered Coordination Control of Connected Automated Vehicles in Traffic Networks. CoRR abs/2203.13147 (2022)
[i18]Makram Chahine, Roya Firoozi, Wei Xiao, Mac Schwager, Daniela Rus:
Intention Communication and Hypothesis Likelihood in Game-Theoretic Motion Planning. CoRR abs/2209.12968 (2022)
[i17]Ehsan Sabouni, Christos G. Cassandras, Wei Xiao, Nader Meskin:
Optimal Control of Connected Automated Vehicles with Event/Self-Triggered Control Barrier Functions. CoRR abs/2209.13053 (2022)
[i16]Wei Xiao, Tsun-Hsuan Wang, Ramin M. Hasani, Mathias Lechner, Daniela Rus:
On the Forward Invariance of Neural ODEs. CoRR abs/2210.04763 (2022)
[i15]Tsun-Hsuan Wang, Wei Xiao, Tim Seyde, Ramin M. Hasani, Daniela Rus:
Interpreting Neural Policies with Disentangled Tree Representations. CoRR abs/2210.06650 (2022)- 2021
[b1]Wei Xiao:
Optimal control and learning for safety-critical autonomous systems. Boston University, USA, 2021
[j3]Wei Xiao, Christos G. Cassandras:
Decentralized optimal merging control for Connected and Automated Vehicles with safety constraint guarantees. Autom. 123: 109333 (2021)
[j2]Wei Xiao, Christos G. Cassandras, Calin A. Belta
:
Bridging the gap between optimal trajectory planning and safety-critical control with applications to autonomous vehicles. Autom. 129: 109592 (2021)
[j1]Wei Xiao, Christos G. Cassandras, Calin Belta
:
Safety-Critical Optimal Control for Autonomous Systems. J. Syst. Sci. Complex. 34(5): 1723-1742 (2021)
[c14]Wei Xiao, Calin A. Belta
, Christos G. Cassandras:
High Order Control Lyapunov-Barrier Functions for Temporal Logic Specifications. ACC 2021: 4886-4891
[c13]Wei Xiao, Calin Belta
, Christos G. Cassandras:
Event-Triggered Safety-Critical Control for Systems with Unknown Dynamics. CDC 2021: 540-545
[c12]Yiding Ji, Xiang Yin, Wei Xiao:
Supervisory Control for Stabilization under Multiple Local Average Payoff Constraints. CDC 2021: 1054-1061
[c11]Wei Xiao, Christos G. Cassandras:
Decentralized Optimal Merging Control for Connected and Automated Vehicles on Curved Roads. CDC 2021: 2677-2682
[c10]Wei Xiao, Noushin Mehdipour, Anne Collin, Amitai Bin-Nun
, Emilio Frazzoli, Radboud J. Duintjer Tebbens, Calin Belta
:
Rule-based optimal control for autonomous driving. ICCPS 2021: 143-154
[c9]Kaiyuan Xu, Christos G. Cassandras, Wei Xiao:
Decentralized Time and Energy-Optimal Control of Connected and Automated Vehicles in a Roundabout. ITSC 2021: 681-686
[i14]Wei Xiao, Noushin Mehdipour, Anne Collin, Amitai Bin-Nun, Emilio Frazzoli, Radboud J. Duintjer Tebbens, Calin Belta:
Rule-based Optimal Control for Autonomous Driving. CoRR abs/2101.05709 (2021)
[i13]Wei Xiao, Calin A. Belta, Christos G. Cassandras:
High Order Control Lyapunov-Barrier Functions for Temporal Logic Specifications. CoRR abs/2102.06787 (2021)
[i12]Wei Xiao, Calin Belta, Christos G. Cassandras:
Event-Triggered Safety-Critical Control for Systems with Unknown Dynamics. CoRR abs/2103.15874 (2021)
[i11]Kaiyuan Xu, Christos G. Cassandras, Wei Xiao:
Decentralized Time and Energy-Optimal Control of Connected and Automated Vehicles in a Roundabout. CoRR abs/2104.06242 (2021)
[i10]Wei Xiao, Noushin Mehdipour, Anne Collin, Amitai Y. Bin-Nun, Emilio Frazzoli, Radboud J. Duintjer Tebbens, Calin Belta:
Rule-based Evaluation and Optimal Control for Autonomous Driving. CoRR abs/2107.07460 (2021)
[i9]Wei Xiao, Ramin M. Hasani, Xiao Li, Daniela Rus:
BarrierNet: A Safety-Guaranteed Layer for Neural Networks. CoRR abs/2111.11277 (2021)- 2020
[c8]Wei Xiao, Christos G. Cassandras:
Decentralized Optimal Merging Control for Connected and Automated Vehicles with Optimal Dynamic Resequencing. ACC 2020: 4090-4095
[c7]Wei Xiao, Calin A. Belta
, Christos G. Cassandras:
Feasibility-Guided Learning for Constrained Optimal Control Problems. CDC 2020: 1896-1901
[c6]Wei Xiao, Christos G. Cassandras, Calin Belta
:
Decentralized Optimal Control in Multi-lane Merging for Connected and Automated Vehicles. ITSC 2020: 1-6
[i8]Wei Xiao, Calin Belta, Christos G. Cassandras:
Adaptive Control Barrier Functions for Safety-Critical Systems. CoRR abs/2002.04577 (2020)
[i7]Wei Xiao, Christos G. Cassandras, Calin Belta:
Decentralized Optimal Control in Multi-lane Merging for Connected and Automated Vehicles. CoRR abs/2006.00286 (2020)
[i6]Wei Xiao, Christos G. Cassandras, Calin A. Belta:
Bridging the Gap between Optimal Trajectory Planning and Safety-Critical Control with Applications to Autonomous Vehicles. CoRR abs/2008.07632 (2020)
[i5]Huile Xu, Wei Xiao, Christos G. Cassandras, Yi Zhang, Li Li:
A General Framework for Decentralized Safe Optimal Control of Connected and Automated Vehicles in Multi-Lane Intersections. CoRR abs/2010.02881 (2020)
[i4]Wei Xiao, Calin Belta, Christos G. Cassandras:
Sufficient Conditions for Feasibility of Optimal Control Problems Using Control Barrier Functions. CoRR abs/2011.08248 (2020)
2010 – 2019
- 2019
[c5]Wei Xiao, Christos G. Cassandras:
Decentralized Optimal Merging Control for Connected and Automated Vehicles. ACC 2019: 3315-3320
[c4]Wei Xiao, Calin Belta
:
Control Barrier Functions for Systems with High Relative Degree. CDC 2019: 474-479
[c3]Wei Xiao, Christos G. Cassandras:
Conditions for Improving the Computational Efficiency of Decentralized Optimal Merging Controllers for Connected and Automated Vehicles. CDC 2019: 3158-3163
[c2]Wei Xiao, Calin Belta
, Christos G. Cassandras
:
Decentralized merging control in traffic networks: a control barrier function approach. ICCPS 2019: 270-279
[c1]Wei Xiao, Christos G. Cassandras
, Calin Belta
:
Decentralized Merging Control in Traffic Networks with Noisy Vehicle Dynamics: a Joint Optimal Control and Barrier Function Approach. ITSC 2019: 3162-3167
[i3]Wei Xiao, Calin Belta:
Control Barrier Functions for Systems with High Relative Degree. CoRR abs/1903.04706 (2019)
[i2]Wei Xiao, Calin A. Belta, Christos G. Cassandras:
Feasibility-Guided Learning for Robust Control in Constrained Optimal Control Problems. CoRR abs/1912.04066 (2019)- 2018
[i1]Wei Xiao, Christos G. Cassandras:
Decentralized Optimal Merging Control for Connected and Automated Vehicles. CoRR abs/1809.07916 (2018)
Coauthor Index

manage site settings
To protect your privacy, all features that rely on external API calls from your browser are turned off by default. You need to opt-in for them to become active. All settings here will be stored as cookies with your web browser. For more information see our F.A.Q.
Unpaywalled article links
Add open access links from
to the list of external document links (if available).
Privacy notice: By enabling the option above, your browser will contact the API of unpaywall.org to load hyperlinks to open access articles. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Unpaywall privacy policy.
Archived links via Wayback Machine
For web page which are no longer available, try to retrieve content from the
of the Internet Archive (if available).
Privacy notice: By enabling the option above, your browser will contact the API of archive.org to check for archived content of web pages that are no longer available. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Internet Archive privacy policy.
Reference lists
Add a list of references from
,
, and
to record detail pages.
load references from crossref.org and opencitations.net
Privacy notice: By enabling the option above, your browser will contact the APIs of crossref.org, opencitations.net, and semanticscholar.org to load article reference information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Crossref privacy policy and the OpenCitations privacy policy, as well as the AI2 Privacy Policy covering Semantic Scholar.
Citation data
Add a list of citing articles from
and
to record detail pages.
load citations from opencitations.net
Privacy notice: By enabling the option above, your browser will contact the API of opencitations.net and semanticscholar.org to load citation information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the OpenCitations privacy policy as well as the AI2 Privacy Policy covering Semantic Scholar.
OpenAlex data
Load additional information about publications from
.
Privacy notice: By enabling the option above, your browser will contact the API of openalex.org to load additional information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the information given by OpenAlex.
last updated on 2026-04-17 23:36 CEST by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint


Google
Google Scholar
Semantic Scholar
Internet Archive Scholar
CiteSeerX
ORCID







