arXiv:2605.26991cs.RO2026-05

让机器人像人一样协作,从身体到智能都为人类优化

Towards Shared Embodied Intelligence in Humanoid Robots through Optimization Development and Testing of the Human Aware ergoCub Robot

论文配图:Towards Shared Embodied Intelligence in Humanoid Robots through Optimization Development and Testing of the Human Aware ergoCub Robot
图 1 · 摘自论文原文
  • 将人体工学与认知智能融合,优化机器人硬件和控制
  • ergoCub机器人通过人体模型提升协作效率与安全性
  • 适合工业与辅助机器人场景,强调人机协同设计

协作是人类行为的核心,使个体无法完成的任务得以实现。这种能力源于对他人内部表征的协调,称为共享智能。同时,人类的身体与认知能力在环境中不断优化,体现为具身认知。设计能安全高效协作的人形机器人,需整合这些原则。本文提出一种架构,将共享智能与具身认知结合,使机器人在物理协作中具备人体适应性,其硬件与控制均以人类工效学指标为优化目标,嵌入人体形态与运动智能模型。作为具体实现,本文介绍人机感知型人形机器人ergoCub,其形态与控制经人体工效优化,专用于人机协作任务。该方法为兼顾硬件与物理智能层面的人类工效设计提供了框架,适用于工业与辅助机器人领域。

原文摘要 · Abstract (English)

Collaboration is central to human behavior, enabling tasks beyond individual capability. This ability arises from coordinating actions through internal representations of others, a concept known as shared intelligence. Additionally, humans are characterized by physical bodies and cognitive abilities that are optimized in response to their environment, a phenomenon referred to as embodied cognition. Designing humanoid robots that collaborate safely and effectively with people requires unifying these principles. Here we propose an architecture that integrates shared intelligence and embodied cognition to enable robots to physically collaborate with humans, where robot hardware and control are optimized for human metrics, using representations of the human body and motion intelligence. The ultimate goal is to achieve a form of shared embodied intelligence. Specifically, our architecture optimizes robot hardware and physical intelligence parameters with respect to human ergonomic metrics. This is accomplished by modeling human-robot interaction as a function of hardware configurations and embedding human models into the robot's physical intelligence. As a concrete implementation, we present the humanoid robot ergoCub, whose morphology and control have been optimized for collaborative tasks with humans. Our approach provides a framework for designing humanoid robots that prioritize human ergonomics at both the hardware and physical intelligence levels, with applications in industrial and assistive robotics.

人机协作具身智能人形机器人工效优化

Thank you to arXiv for use of its open access interoperability. PaperDance 不是 arXiv 官方产品;中文卡片由大模型生成,请以原文为准。