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IEEE Robotics and Automation Letters · 期刊 · Robotics

2026-06-26 至 2026-06-26 共收录 2
2603.15013 2026-06-26 cs.RO 版本更新

CycleRL: Sim-to-Real Deep Reinforcement Learning for Robust Autonomous Bicycle Control

CycleRL:面向鲁棒自主自行车控制的仿真到现实深度强化学习

Gelu Liu, Teng Wang, Zhijie Wu, Junliang Wu, Songyuan Li, Xiangwei Zhu

机构 * School of Electronics and Communication Engineering and Shenzhen Key Laboratory of Navigation and Communication Integration, Sun Yat-sen University(电子工程学院和深圳导航通信集成重点实验室,中山大学)

AI总结 提出CycleRL框架,利用高保真仿真环境和域随机化,通过PPO算法实现自主自行车的平衡、速度跟踪和转向控制,在仿真中达到99.90%平衡成功率,并成功迁移到真实硬件。

Comments 8 pages, 7 figures, 8 tables. Accepted for publication in IEEE Robotics and Automation Letters (L-RA). See: https://ieeexplore.ieee.org/document/11568521

Journal ref IEEE Robotics and Automation Letters, vol. 11, no. 8, pp. 9343-9350, 2026

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2602.13720 2026-06-26 cs.RO 版本更新

FC-Vision: Real-Time Visibility-Aware Replanning for Occlusion-Free Aerial Target Structure Scanning in Unknown Environments

FC-Vision:未知环境中无遮挡空中目标结构扫描的实时可见性感知重规划

Chen Feng, Yang Xu, Shaojie Shen

机构 * Dept. of Electronic and Computer Engineering, The Hong Kong University of Science and Technology(电子与计算机工程系,香港科学与技术大学)

AI总结 提出FC-Vision框架,通过双层分解(无遮挡视点修复和分段清洁感知连接)实时施加密集表面可见性约束,在保持覆盖率和效率的同时主动防止目标遮挡,实现55.32%的覆盖率提升和73.17%的遮挡率降低。

Comments Accepted by IEEE Robotics and Automation Letters. 8 pages, 8 figures, 3 tables. Code: https://github.com/FC-Family/FC-Vision. Video: https://www.youtube.com/watch?v=H3C42zlDOAI

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