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A Fuzzy Adaptive PD Controller Based Microassembly System

机译:基于模糊自适应PD控制器的微装配系统

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摘要

Proportional control based visual controller is the main method used in the visual serving, but small proportional gain results in the slowly response and large proportional gain will result in large overshoot or make the system instable. A PD visual controller for microassembly system is presented to acquire better dynamic response. The fuzzy logic is applied to tuning the controller gains which is a model free method. Thus, the difficulty in obtaining precise and detailed system model is avoided and we can get satisfactory performance which is robust to modeling error and external disturbances. Furthermore, image moments are selected as visual features to avoid image singularities and the Jacobian matrix is full rank and upper triangular, thus it has the maximal decoupled structure and simplified the controller. A series of simulations are performed on peg and hole assembly to investigate the feasibility and effectiveness of this method.
机译:基于比例控制的视觉控制器是视觉服务中使用的主要方法,但是比例增益较小会导致响应缓慢,比例增益较大会导致过冲过大或使系统不稳定。提出了一种用于微装配系统的PD视觉控制器,以获得更好的动态响应。模糊逻辑适用于调节控制器增益,这是一种无模型方法。因此,避免了获得精确而详细的系统模型的困难,并且我们可以获得令人满意的性能,该性能对于建模误差和外部干扰具有鲁棒性。此外,选择图像矩作为视觉特征以避免图像奇异,并且雅可比矩阵为满秩和上三角,因此它具有最大的解耦结构并简化了控制器。对桩和孔的装配进行了一系列模拟,以研究该方法的可行性和有效性。

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