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Fuzzy MRAC Controller Design for the Vane-Type Air Motor

机译:叶片式空气电机的模糊MRAC控制器设计

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Air motors are widely used in automation industry due to the special requirements, such as park-prohibited environments, mining industry, chemical manufactory, and so on. Due to the compressibility of air and the friction in mechanism, the overall system is actually nonlinear with dead-zone behaviors. The performance of the previous controllers implemented on the air motor system demonstrated large overshoot, slow response and significant fluctuation errors around the setting points. It is important to eliminate the dead-zone for improving the control performance. By considering the effects of the dead-zone behaviors, we developed a MRAC with fuzzy friction compensation controller to overcome the affection of dead-zone. The experiment results are given to validate the proposed velocity control strategy.
机译:由于特殊要求,如公园禁止的环境,矿业,化学制造商等,空气电机广泛应用于自动化行业。由于空气的可压缩性和机构的摩擦,整个系统实际上是带有死区行为的非线性。在空气电机系统上实现的先前控制器的性能显示出大量的过冲,慢速响应和在设定点周围的显着波动误差。消除死区以改善控制性能非常重要。通过考虑死区行为的影响,我们开发了一种模糊摩擦补偿控制器的MRAC,以克服死区的影响。给出了实验结果验证了所提出的速度控制策略。

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