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视觉与机器人

自动驾驶

自动驾驶感知、规划、BEV、占用预测、激光雷达和仿真评测。

今日/当前日期收录 1 信号源:cs.RO, cs.CV, eess.IV, cs.AI
2606.19267 2026-06-18 cs.RO cs.SY eess.SY 新提交 95%

A Mixed-Reality Testbed for Autonomous Vehicles

自动驾驶汽车的混合现实测试平台

H. M. Sabbir Ahmad, Ehsan Sabouni, Emrullah Celik, Zean Wan, Damola Ajeyemi, Christos G. Cassandras, Wenchao Li

发表机构 * Division of Systems Engineering(系统工程系) Boston University(波士顿大学) Department of Electrical and Computer Engineering(电气与计算机工程系)

专题命中 仿真评测 :混合现实测试平台用于自动驾驶验证

AI总结 提出一种混合现实硬件在环测试平台,集成物理移动机器人与高保真仿真环境,用于验证感知、规划和控制算法,并支持多智能体系统研究。

Comments 9 pages, 7 figures, 1 table

详情
AI中文摘要

我们提出了一种用于自动驾驶汽车的混合现实、硬件在环(HIL)测试平台,该平台将物理移动机器人测试平台与高保真仿真环境无缝集成。虚拟仿真能够创建多样化的、安全关键的驾驶场景,以验证最先进的感知、规划和控制算法,同时通过配备多模态传感器的物理机器人在逼真的虚拟环境中增强仿真,进一步促进严格的验证。我们的测试平台还利用无线通信实现车辆连接,并通过物理机器人和虚拟仿真代理的组合容纳大量代理,支持包括网联自动驾驶汽车(CAV)在内的多智能体系统研究。最后,我们提出了一种结合感知、规划和一种新颖的基于控制障碍函数(CBF)的在线学习控制器的安全保证框架,用于CAV。使用所提出框架的实验用于验证和展示测试平台的关键功能以及其在弥合仿真与真实世界硬件部署之间差距方面的整体效用。

英文摘要

We propose a mixed-reality, hardware-in-the-loop (HIL) testbed for autonomous vehicles that seamlessly integrates a physical testbed of mobile robots with a high-fidelity simulation environment. The virtual simulation enables the creation of diverse, safety-critical driving scenarios to validate state-of-the-art perception, planning, and control algorithms, while augmenting simulations with physical robots equipped with multimodal sensors in photorealistic virtual environments further facilitating rigorous validation. Our testbed also features vehicular connectivity using wireless communication and can accommodate a large number of agents through the combination of physical robots and virtual simulated agents, supporting research on multi-agent systems including Connected and Autonomous Vehicles (CAVs). Finally, we present a safety-guaranteed framework combining perception, planning and a novel online learning-based controller using Control Barrier Functions (CBFs) for CAVs. Experiments using the proposed framework are used to validate and demonstrate the key functionalities and the overall utility of the testbed to bridge the gap between simulation and real-world hardware deployment.