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The compensation for nonlinear friction of DDVC flange-type rotary vane steering gear

机译:DDVC法兰式旋片转向器非线性摩擦的补偿

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摘要

This study reports on the direct drive volume control flange-type rotary vane steering gear (DDVC-FRVSG), a promising component with superior advantages of compact structure, powerful vibration absorption, and simple control for application in the controlling course and posture of a vessel. The ability of the DDVC-FRVSG to satisfy the accuracy requirement of the vessel is limited by nonlinear friction. This study proposes two compensation methods to compensate for the nonlinear friction. We establish the mathematical model and the transfer function of the steering gear system and the mathematical model of nonlinear friction on the DDVC-FRVSG system based on the principle of the DDVC-FRVSG. A high-gain proportional–integral–derivative control strategy and another method using the self-adaption robust control strategy is proposed and studied both theoretically and experimentally to suppress the nonlinear friction. With the “no-compensation state” as a benchmark, our measured results by prototype testing has proved that both methods can compensate for the nonlinear friction, with the second method showing a better performance of up to 78.85% increase compared to that of the 41.65% shown by the first one. The outcome of this research will contribute to the rapidity and stability of the DDVC-FRVSG.
机译:这项研究报告了直接驱动音量控制法兰式旋转叶片转向器(DDVC-FRVSG),它是一种有前途的组件,具有结构紧凑,振动吸收能力强,控制简单等优点,可用于控制船舶的航向和姿态。 DDVC-FRVSG满足船舶精度要求的能力受到非线性摩擦的限制。这项研究提出了两种补偿方法来补偿非线性摩擦。基于DDVC-FRVSG的原理,建立了DDVC-FRVSG系统的舵机系统数学模型和传递函数以及非线性摩擦数学模型。提出了一种高增益比例-积分-微分控制策略,以及采用自适应鲁棒控制策略的另一种方法,并在理论和实验上进行了研究以抑制非线性摩擦。以“无补偿状态”为基准,我们通过原型测试得到的测量结果证明,这两种方法都可以补偿非线性摩擦,第二种方法的性能比41.65%提高了78.85%。 %由第一个显示。这项研究的结果将有助于DDVC-FRVSG的快速性和稳定性。

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  • 年(卷),期 -1(13),11
  • 年度 -1
  • 页码 e0207018
  • 总页数 21
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