arXiv:2607.23040eess.SYcs.RO2026-07

让机器人在受限执行器下高效完成动态避障与停留任务

Actuator-Aware Spatiotemporal Tube Synthesis for Temporal Reach-Avoid-Stay Tasks

论文配图:Actuator-Aware Spatiotemporal Tube Synthesis for Temporal Reach-Avoid-Stay Tasks
图 1 · 摘自论文原文
  • 将执行器约束融入管状轨迹生成过程,避免事后重优化
  • 仿真显示控制能耗降低约50%,全程满足执行器限制
  • 适合需高可靠性轨迹规划的复杂非线性系统

本文提出一种执行器感知的时空管(STT)合成框架,用于未知非线性多输入多输出(MIMO)系统在执行器约束下的时序到达-避让-停留(T-RAS)任务。现有方法在管生成后通过在线重优化或控制器重设计处理执行器饱和问题。本框架则将执行器约束直接嵌入管合成过程。采用伯恩斯坦多项式基函数参数化管中心线与宽度,利用其凸包性质实现无采样几何与导数约束强制。通过分析无近似预设性能控制器(PPC)的最坏情况闭环误差动态,推导出线性执行器可行性约束,并将其直接以管的伯恩斯坦控制点形式嵌入优化中,实现无需在线重优化或控制器重设计的执行器可行管生成。对全向移动机器人执行T-RAS任务的仿真表明,该框架在整个任务过程中严格遵守预设执行器极限,相比现有方法控制努力减少约50%。

原文摘要 · Abstract (English)

This work proposes an actuator-aware spatiotemporal tube (STT) synthesis framework to accomplish temporal reach-avoid-stay (T-RAS) tasks for an unknown nonlinear multi-input and multi-output (MIMO) system under actuator constraints. Existing STT synthesis methods address actuator saturation after the tube generation either through repeated online re-optimization or controller redesign. Instead, the proposed framework incorporates actuator constraints directly into the tube synthesis process. The STT centerline and width are parameterized using Bernstein polynomial basis functions, whose convex-hull property enables sample-free enforcement of geometric and derivative constraints. By analyzing the worst-case closed-loop error dynamics of an approximation-free prescribed performance controller (PPC) used for STT tracking, we derive a linear actuator feasibility constraint. The constraints are embedded directly in terms of the tubes' Bernstein control points into the STT synthesis optimization for actuator-feasible tube generation, eliminating the need for online re-optimization or controller redesign. A simulation study on an omnidirectional mobile robot performing a T-RAS task shows that the proposed framework adheres to the prescribed actuator limits throughout the task and reduces required control effort by approximately $50\%$ compared with an existing STT synthesis method.

轨迹规划执行器约束非线性控制

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。