论文标题

动态布操作的模型预测控制:参数学习和实验验证

Model Predictive Control for Dynamic Cloth Manipulation: Parameter Learning and Experimental Validation

论文作者

Luque, Adrià, Parent, David, Colomé, Adrià, Ocampo-Martinez, Carlos, Torras, Carme

论文摘要

对于自动机器人系统而言,机器人布操作是一个相关的挑战性问题。高度变形的对象,因为纺织品在操纵过程中可以采用多种配置和形状。因此,机器人不仅应该了解当前的布料配置,还应该能够预测布的未来行为。本文通过使用模型预测控制(MPC)策略在对象的其他部分上应用动作,从而解决了间接控制纺织对象某些点的配置的问题,该策略还可以预见间接控制点的行为。设计的控制器找到了最佳控制信号,以达到所需的未来目标配置。本文中的探索场景考虑了通过抓住其上角,以平方布的下角跟踪参考轨迹。为此,我们提出并验证一个线性布模型,该模型允许实时解决与MPC相关的优化问题。增强学习(RL)技术用于学习提出的布模型的最佳参数,并调整所得的MPC。在模拟中获得准确的跟踪结果后,在真实的机器人中实现并执行了完整的控制方案,即使在不利条件下也可以获得准确的跟踪。尽管总观察到的误差达到5 cm标记,但对于30x30 cm布,分析表明,MPC对该值的贡献不到30%。

Robotic cloth manipulation is a relevant challenging problem for autonomous robotic systems. Highly deformable objects as textile items can adopt multiple configurations and shapes during their manipulation. Hence, robots should not only understand the current cloth configuration but also be able to predict the future possible behaviors of the cloth. This paper addresses the problem of indirectly controlling the configuration of certain points of a textile object, by applying actions on other parts of the object through the use of a Model Predictive Control (MPC) strategy, which also allows to foresee the behavior of indirectly controlled points. The designed controller finds the optimal control signals to attain the desired future target configuration. The explored scenario in this paper considers tracking a reference trajectory with the lower corners of a square piece of cloth by grasping its upper corners. To do so, we propose and validate a linear cloth model that allows solving the MPC-related optimization problem in real time. Reinforcement Learning (RL) techniques are used to learn the optimal parameters of the proposed cloth model and also to tune the resulting MPC. After obtaining accurate tracking results in simulation, the full control scheme was implemented and executed in a real robot, obtaining accurate tracking even in adverse conditions. While total observed errors reach the 5 cm mark, for a 30x30 cm cloth, an analysis shows the MPC contributes less than 30% to that value.

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