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A neural network-based input shaping for swing suppression of an overhead crane under payload hoisting and mass variations

机译:基于神经网络的输入整形,用于有效载荷提升和质量变化下的桥式起重机的摆动抑制

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This paper proposes an improved input shaping for minimising payload swing of an overhead crane with payload hoisting and payload mass variations. A real time unity magnitude zero vibration (UMZV) shaper is designed by using an artificial neural network trained by particle swarm optimisation. The proposed technique could predict and directly update the shaper’s parameters in real time to handle the effects of time-varying parameters during the crane operation with hoisting. To evaluate the performances of the proposed method, experiments are conducted on a laboratory overhead crane with a payload hoisting, different payload masses and two different crane motions. The superiority of the proposed method is confirmed by reductions of at least 38.9% and 91.3% in the overall and residual swing responses, respectively over a UMZV shaper designed using an average operating frequency and a robust shaper namely Zero Vibration Derivative-Derivative (ZVDD). The proposed method also demonstrates a significant residual swing suppression as compared to a ZVDD shaper designed based on varying frequency. In addition, the significant reductions are achieved with a less shaper duration resulting in a satisfactory speed of response. It is envisaged that the proposed method can be used for designing effective input shapers for payload swing suppression of a crane with time-varying parameters and for a crane that employ finite actuation states.
机译:本文提出了一种改进的输入整形技术,可通过有效载荷提升和有效载荷质量变化来最小化桥式起重机的有效载荷摆动。实时统一幅度零振动(UMZV)成形器是通过使用经过粒子群优化训练的人工神经网络设计的。所提出的技术可以实时预测并直接更新整形机的参数,以处理吊装起重机操作过程中随时间变化的参数的影响。为了评估所提出方法的性能,在具有有效载荷提升,不同有效载荷质量和两个不同起重机运动的实验室桥式起重机上进行了实验。与使用平均工作频率和鲁棒整形器(即零振动导数-微分(ZVDD))设计的UMZV整形器相比,总体和残余摆幅响应分别降低了至少38.9%和91.3%,从而证实了该方法的优越性。 。与基于可变频率设计的ZVDD整形器相比,该方法还显示出显着的残余摆幅抑制。另外,以较少的成形时间可以实现显着的减小,从而导致令人满意的响应速度。可以设想,所提出的方法可以用于设计有效的输入整形器,以抑制具有时变参数的起重机的有效载荷摆动,以及用于采用有限驱动状态的起重机。

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