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Controller design for anti-heeling system in container ships

机译:集装箱船防倾倒系统的控制器设计

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Excess heeling in container ships often occurs in the process of unbalanced marine cargo loading and unloading, which is a great restriction to rapid loading work and is even detrimental to the security of the ship. In order to increase the loading and unloading speed, as well as ensure the container ship's safety during the process of container stevedoring, this paper investigates two different controller design scenarios for the high efficiency anti-heeling system employed in the container ship. One is a valve switched anti-heeling system with a logic controller and the other is a reversible pump anti-heeling system with a PID controller. Simulation is conducted to illustrate each controller's performance in terms of following the input command and rejecting external heeling moment disturbance. Methods of tuning the related coefficients for controllers in the list control system are given in searching of a sound system's response to loading and unloading work. Simulation results can also be utilized to choose among different types of anti-heeling systems, as well as each individual device, such as valve and pump.
机译:集装箱船中过多的横倾通常发生在不平衡的海上货物装卸过程中,这对快速装卸工作有很大的限制,甚至对船舶的安全性也有不利影响。为了提高装卸过程中的装卸速度,并确保集装箱船的安全,本文针对集装箱船采用的高效防倾翻系统,研究了两种不同的控制器设计方案。一个是带有逻辑控制器的阀门开关防倾侧系统,另一个是带有PID控制器的可逆泵防倾侧系统。通过仿真来说明每个控制器在遵循输入命令和拒绝外部横倾力矩扰动方面的性能。在搜索音响系统对装卸工作的响应时,给出了调整列表控制系统中控制器的相关系数的方法。仿真结果还可以用于在不同类型的防倾倒系统以及每个单独的设备(例如阀门和泵)中进行选择。

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