Hierarchical Understanding in Robotic Manipulation: A Knowledge-Based Framework

Author:

Miao Runqing1,Jia Qingxuan1,Sun Fuchun2,Chen Gang1,Huang Haiming3

Affiliation:

1. School of Automation, Beijing University of Posts and Telecommunications, Beijing 100876, China

2. Institute for Artificial Intelligence, Tsinghua University, Beijing 100084, China

3. College of Electronics and Information Engineering, Shenzhen University, Shenzhen 518060, China

Abstract

In the quest for intelligent robots, it is essential to enable them to understand tasks beyond mere manipulation. Achieving this requires a robust parsing mode that can be used to understand human cognition and semantics. However, the existing methods for task and motion planning lack generalization and interpretability, while robotic knowledge bases primarily focus on static manipulation objects, neglecting the dynamic tasks and skills. To address these limitations, we present a knowledge-based framework for hierarchically understanding various factors and knowledge types in robotic manipulation. Using this framework as a foundation, we collect a knowledge graph dataset describing manipulation tasks from text datasets and an external knowledge base with the assistance of large language models and construct the knowledge base. The reasoning tasks of entity alignment and link prediction are accomplished using a graph embedding method. A robot in real-world environments can infer new task execution plans based on experience and knowledge, thereby achieving manipulation skill transfer.

Funder

Autonomous Learning of Complex Skills by multi-degree-of-freedom Agents

Major Project of the New Generation of Artificial Intelligence

Publisher

MDPI AG

Reference46 articles.

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