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Cargo pendulation reduction of ship-mounted cranes

机译:减少船用起重机的货物摆放

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Ship-mounted cranes are used to transfer cargo from large container ships to smaller lighters when deep-water ports are not available. The wave-induced motion of the crane ship can produce large pendulations of the cargo being hoisted and cause operations to be suspended. In this work, we show that it is possible to reduce these pendulations significantly by controlling the slew and luff angles of the boom. Such a control can be achieved with the heavy equipment that is already part of the crane so that retrofitting existing cranes would require a small effort. Moreover, the control is superimposed on the commands of the operator transparently. The successful control strategy is based on delayed feedback of the angles of the cargo-hoisting cable in and out of the plane of the boom and crane tower. Its effectiveness is demonstrated in a fully nonlinear three-dimensional computer simulation and in an experiment with a 1/24th-scale model of a T-ACS (The Auxiliary Crane Ship) crane mounted on a platform moving with three degrees of freedom. The results demonstrate that the pendulations can be significantly reduced, and therefore the range of sea conditions in which cargo-transfer operations can take place can be greatly expanded.
机译:当没有深水港时,船上起重机用于将货物从大型集装箱船转移到较小的打火机。起重机船的波浪引起的运动会导致吊装的货物产生较大的挠曲,并导致作业暂停。在这项工作中,我们表明可以通过控制动臂的回转角和摆动角来显着减少这些摆动。可以使用已经属于起重机的重型设备来实现这种控制,因此,对现有起重机进行改造将需要少量的精力。此外,控制透明地叠加在操作员的命令上。成功的控制策略是基于对起重吊索进出吊臂和起重机塔平面的角度的延迟反馈。它的有效性在完全非线性的三维计算机模拟中以及在安装在具有三个自由度的平台上的T-ACS(辅助起重机船)起重机的1/24比例模型的实验中得到了证明。结果表明,可以显着减少绑架,因此可以大大扩展可以进行货物转运作业的海况范围。

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