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Circulant Synthesis of Central Pattern Generators With Application to Control of Rectifier Systems

机译:中央模式发生器的循环综合在整流系统控制中的应用

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While regulations around an equilibrium point or a reference trajectory have been the focus of recent feedback control theories, generation of autonomous oscillations with a specific pattern plays a crucial role in important control applications such as robotics. The central pattern generator (CPG) is the fundamental neuronal mechanism underlying rhythmic movements of animals, and may provide a new paradigm for controlled oscillations of engineering systems. This paper gives a novel method for synthesizing artificial CPG circuits by utilizing the properties of circulant matrices. We show how neuron models can be interconnected to yield a periodic orbit with prescribed frequency, amplitudes, and phases. Using the synthetic CPG in a feedback loop, we propose a control design method for a class of nonlinear rectifier systems to achieve the optimal state pattern with respect to a certain measure of efficiency, subject to small ripples in the rectified variable. The effectiveness of the proposed method is illustrated by an application to the gait control of an undulatory snakelike system.
机译:尽管围绕平衡点或参考轨迹的调节一直是最近的反馈控制理论的重点,但具有特定模式的自主振动的产生在诸如机器人技术的重要控制应用中起着至关重要的作用。中央模式发生器(CPG)是动物节律运动的基本神经元机制,可以为工程系统的受控振荡提供新的范例。本文提出了一种利用循环矩阵性质合成人工CPG电路的新方法。我们展示了如何将神经元模型相互连接以产生具有规定频率,幅度和相位的周期性轨道。在反馈回路中使用合成CPG,我们针对一类非线性整流器系统提出了一种控制设计方法,以针对特定的效率量度实现最佳状态模式,并且要在整流变量中产生较小的波动。将该方法应用于起伏蛇形系统的步态控制中,说明了该方法的有效性。

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