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Effects of Unsteady Lift and Cable Tension on Design of a Control System of a Towed Vehicle

机译:不稳定提升电缆张力对牵引车辆控制系统设计的影响

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A high speed towed vehicle, "Flying Fish" is being developed to measure chemical and physical properties of the ocean. To design a motion control system for the vehicle an accurate mathematical model of motion of the towing cable is essential because the cable length must be very long to meet safety requirements and to expand the observation area. We report a technique for design of a motion controller which uses a mathematical model based on mode expansion by eigenfunctions. This provides an accurate mathematical model of the cable motion which has fewer parameters than other methods. This simple cable model enables us to apply an advanced control theory to the motion control. Numerical simulations by the lumped mass model and by the new method are compared and difference of the cable model is discussed. Furthermore, unsteady effect on lift of the wings is investigated. Numerical simulation is carried out which includes the unsteady effect and problems in the design of a motion controller are discussed.
机译:正在开发出高速拖车,“飞鱼”测量海洋的化学和物理性质。为了设计车辆的运动控制系统,牵引电缆的精确数学模型是必不可少的,因为电缆长度必须很长以满足安全要求并扩大观察区域。我们报告了一种用于设计运动控制器的技术,该运动控制器使用基于模式扩展的基于模式扩展来设计数学模型。这提供了具有比其他方法更少的电缆运动的准确数学模型。这种简单的电缆型号使我们能够将先进的控制理论应用于运动控制。比较了大量质量模型和新方法的数值模拟,并进行了讨论了电缆模型的差异。此外,研究了对翅膀升力的不稳定影响。执行数值模拟,其包括讨论了运动控制器设计中的不稳定效应和问题。

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