混合计算架构让机器人实时与人合奏乐器
Heterogeneous computing platform for real-time robotics
- 用神经形态芯片+事件相机感知,GPU处理语言与规划
- 实测显示系统响应快,人机协作无延迟
- 适合智能城市、人机交互等实时机器人场景
随着工业4.0推动OT(设备)、IT(软件)与互联网深度融合,形成传感、数据与算法网络以提升生产效率与可靠性,新的社会5.0概念正兴起——城市基础设施将被全面感知,以增强可靠性、效率与安全性。机器人将在这一愿景中扮演关键角色,尤其由NEOM智慧城项目引领,该城将实现人类与机器人共居。本文探讨实现此愿景所需的计算平台:结合神经形态硬件(如Loihi2处理器)与事件相机进行感知与实时交互,搭配本地AI计算集群(GPU)完成高层语言处理、认知与任务规划。我们在一项互动任务中验证了该混合架构:人形机器人与人类共同演奏乐器。设计核心在于软硬件的高效无缝集成,最大化整体性能与响应速度。结果表明,异构计算架构极大提升了机器人自主性与交互智能,预示此类系统将成为复杂实时应用的未来标准。
原文摘要 · Abstract (English)
After Industry 4.0 has embraced tight integration between machinery (OT), software (IT), and the Internet, creating a web of sensors, data, and algorithms in service of efficient and reliable production, a new concept of Society 5.0 is emerging, in which infrastructure of a city will be instrumented to increase reliability, efficiency, and safety. Robotics will play a pivotal role in enabling this vision that is pioneered by the NEOM initiative - a smart city, co-inhabited by humans and robots. In this paper we explore the computing platform that will be required to enable this vision. We show how we can combine neuromorphic computing hardware, exemplified by the Loihi2 processor used in conjunction with event-based cameras, for sensing and real-time perception and interaction with a local AI compute cluster (GPUs) for high-level language processing, cognition, and task planning. We demonstrate the use of this hybrid computing architecture in an interactive task, in which a humanoid robot plays a musical instrument with a human. Central to our design is the efficient and seamless integration of disparate components, ensuring that the synergy between software and hardware maximizes overall performance and responsiveness. Our proposed system architecture underscores the potential of heterogeneous computing architectures in advancing robotic autonomy and interactive intelligence, pointing toward a future where such integrated systems become the norm in complex, real-time applications.
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