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The role of feedback in morphological computation with compliant bodies

机译:反馈在顺应体形态计算中的作用

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摘要

The generation of robust periodic movements of complex nonlinear robotic systems is inherently difficult, especially, if parts of the robots are compliant. It has previously been proposed that complex nonlinear features of a robot, similarly as in biological organisms, might possibly facilitate its control. This bold hypothesis, commonly referred to as morphological computation, has recently received some theoretical support by Hauser et al. (Biol Cybern 105:355–370, doi:10.1007/s00422-012-0471-0, 2012). We show in this article that this theoretical support can be extended to cover not only the case of fading memory responses to external signals, but also the essential case of autonomous generation of adaptive periodic patterns, as, e.g., needed for locomotion. The theory predicts that feedback into the morphological computing system is necessary and sufficient for such tasks, for which a fading memory is insufficient. We demonstrate the viability of this theoretical analysis through computer simulations of complex nonlinear mass–spring systems that are trained to generate a large diversity of periodic movements by adapting the weights of a simple linear feedback device. Hence, the results of this article substantially enlarge the theoretically tractable application domain of morphological computation in robotics, and also provide new paradigms for understanding control principles of biological organisms.
机译:复杂的非线性机器人系统的鲁棒周期性运动的生成固有地困难,特别是如果机器人的部件是顺从的。先前已经提出,与生物体类似,机器人的复杂非线性特征可能会促进其控制。这个大胆的假设,通常被称为形态计算,最近得到了Hauser等人的一些理论支持。 (Biol Cyber​​n 105:355–370,doi:10.1007 / s00422-012-0471-0,2012)。我们在本文中表明,这一理论支持可以扩展到不仅涵盖对外部信号的存储响应衰减的情况,而且还可以涵盖自适应生成的周期性模式(例如运动所需)的必要情况。该理论预测,对于这样的任务而言,向形态计算系统的反馈是必要且充分的,而对于这些任务,褪色的内存不足。我们通过对复杂的非线性质量弹簧系统进行计算机仿真来证明这种理论分析的可行性,这些系统经过训练可以通过调整简单的线性反馈设备的权重来产生较大的周期性运动。因此,本文的结果大大扩展了形态学在机器人技术中的理论上易处理的应用领域,并为理解生物的控制原理提供了新的范例。

著录项

  • 来源
    《Biological Cybernetics》 |2012年第10期|p.595-613|共19页
  • 作者单位

    Artificial Intelligence Laboratory, Department of Informatics, University of Zurich, Andreasstrasse 15, 8050, Zurich, Switzerland;

    École Polytechnique Fédérale de Lausanne, Biorobotics Laboratory BIOROB, 1015, Lausanne, Switzerland;

    Artificial Intelligence Laboratory, Department of Informatics, University of Zurich, Andreasstrasse 15, 8050, Zurich, Switzerland;

    Artificial Intelligence Laboratory, Department of Informatics, University of Zurich, Andreasstrasse 15, 8050, Zurich, Switzerland;

    Graz University of Technology, Institute for Theoretical Computer Science, 8010, Graz, Austria;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Morphological computation; Nonlinear system; Limit cycles; compliant robots;

    机译:形态计算;非线性系统;极限周期;顺应性机器人;

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