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Ship's roll stabilization by anti-roll active tanks

机译:船舶通过防卷主动罐稳定

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This paper examines the control of the heeling angle of a ship in still waters based on the utilisation of anti-heeling tanks operated by pressurized air. The proposed objective attempts to reduce the list angle to a null value during the loading process in a fast ferry ship. A nonlinear adaptive controller has been designed as a means of counteracting the parameter inaccuracies that are involved in the nonlinear model. These are the linear and quadratic damping coefficients and the size of the cargo that is being handled. The design is based on a relatively new methodology, the backstepping procedure. With the objective of reducing the number of sensors a model reference based nonlinear observer has been introduced. The controller thus designed provides a robust control system under parametric uncertainties and state variable errors. The designed control implies an improvement on the actual systems based on the PID control implemented under programmable logic controllers (PLCs).
机译:本文基于采用加压空气操作的抗后跟罐的利用,检查避风中散热器的后角度控制。在快速渡轮中的装载过程中,所提出的目的尝试将列表角减少到空值。非线性自适应控制器被设计为抵消非线性模型中涉及的参数不准确的方法。这些是正在处理的线性和二次阻尼系数和货物的大小。该设计基于相对较新的方法,支持步骤。目的是减少传感器的数量,已经引入了基于模型基准的非线性观察者。因此,控制器根据参数不确定因素和状态可变误差提供了一种鲁棒控制系统。设计的控制意味着基于在可编程逻辑控制器(PLC)下实现的PID控制的实际系统的改进。

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