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Smart control of fast ships - Part 1: A setup for automated proactive control of the thrust used to increase the operability of a small planing monohull sailing in head seas

机译:快速船的智能控制-第1部分:自动主动控制推力的装置,用于增加小型滑行单体船在公海的可操作性

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While sailing in head or bow quartering seas operators on board of small planing boats try to avoid unacceptably large vertical peak accelerations, the main limiting factor for operability, by temporary speed reductions. The operators observe the incoming wave, roughly estimate whether or not the next impact might be too severe, and if so, they choose a certain amount of thrust reduction. Results of full scale trials suggested that an increase of operability may be realised using this so-called thrust control. In this paper the concept of smart control for small planing monohulls sailing in head seas has been introduced. The idea of smart control is that a solution for the increase of the operability of small planing monohulls may be found by using automated proactive control of the thrust. The main purpose of smart control is to keep the vertical accelerations below a predefined threshold value while striving at the highest possible average forward speed during a trip. Three elements are essential for such a control system: a shipboard wave measurement system, a computational model that predicts the response and a stable control system for the thrust.
机译:在小型滑行船上航行于头顶或船首进港处时,操作员试图通过暂时降低速度来避免过大的垂直峰值加速度,这是可操作性的主要限制因素。操作员观察入射波,粗略估计下一次冲击是否可能太严重,如果这样,他们选择一定程度的推力减小。全面试验的结果表明,使用这种所谓的推力控制可以提高可操作性。在本文中,引入了用于在公海中航行的小型滑行单体船的智能控制的概念。智能控制的思想是,通过使用推力的自动主动控制,可以找到提高小型滑行单体船的可操作性的解决方案。智能控制的主要目的是将垂直加速度保持在预定义的阈值以下,同时努力在旅途中以最高的平均前进速度行驶。这种控制系统必须具备三个要素:船上波浪测量系统,预测响应的计算模型以及推力的稳定控制系统。

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