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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Time-Delay Control with Switching Action Using a Frequency-Shaped Integral Sliding Surface
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Time-Delay Control with Switching Action Using a Frequency-Shaped Integral Sliding Surface

机译:带频率整形滑动表面的带开关动作的时滞控制

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The Time Delay Control with switching Action (TDCSA) method was recently proposed as a promising technique in a robust control area, where a plant has unknown dynamics with parameter variations and substantial disturbances are present. When TDCSA is applied to a nonlinear system with frequency resonances, TDCSA reveals a chattering problem or an undesired vibration. This undesired vibration and chattering problem comes from the switching action and high gains. Fast sliding mode dynamics or fast desired error dynamics improve the control performance, but excite the un-modeled resonance modes and cause an undesired vibration or chattering. To solve this problem, we proposed an integral sliding surface design method using frequency-shaping features. This method incorporates frequency-shaping LQ design techniques into an integral sliding surface. In this paper, the stability analysis of TDCSA using a frequency-shaped integral sliding surface is analyzed Based on the experimental results, the frequency-shaped integral sliding surface was shown to be practicable for a single-link flexible arm. Motion control of a single-link flexible arm with un-modeled flexible modes was taken into account. The desired trajectory was tracked while minimally exciting the un-modeled flexible modes.
机译:最近提出了一种带有切换动作的时滞控制(TDCSA)方法,该方法是在鲁棒控制区域中的一种有前途的技术,在该区域中,工厂的动态特性未知,参数变化很大,并且存在很大的干扰。当将TDCSA应用于具有频率谐振的非线性系统时,TDCSA会显示出颤振问题或不希望的振动。这种不希望的振动和颤动问题来自开关动作和高增益。快速的滑动模式动态特性或快速的所需误差动态特性可以改善控制性能,但会激发未建模的共振模式并导致不希望的振动或颤动。为了解决这个问题,我们提出了一种利用频率整形特征的整体滑动表面设计方法。该方法将频率整形LQ设计技术整合到一个整体的滑动表面中。本文基于频率形整体滑动面对TDCSA的稳定性进行了分析,并根据实验结果表明,该频率形整体滑动面对于单连杆柔性臂是可行的。考虑了具有未建模柔性模式的单连杆柔性臂的运动控制。在最小化未建模的灵活模式的同时,跟踪所需的轨迹。

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