Feedback Linearization of Dynamical Systems with Modulated States for Harnessing Water Wave Power
暫譯: 利用調制狀態的動態系統反饋線性化以開發水波能

Xiros, Nikolaos I.

  • 出版商: Morgan & Claypool
  • 出版日期: 2020-05-27
  • 售價: $1,450
  • 貴賓價: 9.5$1,378
  • 語言: 英文
  • 頁數: 75
  • 裝訂: Quality Paper - also called trade paper
  • ISBN: 1681738082
  • ISBN-13: 9781681738086
  • 海外代購書籍(需單獨結帳)

相關主題

商品描述

As pointed out by other researchers, hybrid structures in ocean engineering are based on flat concrete foundations. Due to wave action these foundations are exposed to different pressure distributions on the top and bottom sides. As a result, the bottom side is exposed to a saddle type pressure distribution leading to huge forces on the foundation. Indeed, such huge forces have been observed at a number of offshore platforms installed in the North Sea.

In an attempt to turn a problem into an advantage, the concept in this work aims to develop an integrated system to harness and harvest ocean wave energy right at the seabed. The long-term interest is to develop integrated devices that can be used as actuators or sensors, which, due to low manufacturing cost, can be employed in large quantities for control of ocean engineering systems, e.g., maritime renewable power-plants, or monitoring of marine processes, e.g., oceanographic sensing.

A key element to the proposed system is the nonlinear coupled electromechanical oscillator unit, the dynamics of which are investigated with a novel approach in this work. The fundamental nature of the oscillator at hand makes it an excellent choice for applications involving oceanic transducers consisting of a dry driving electrical stator physically separated from a wet-driven payload mechanism. Without such units available at a low cost and a large number, harvesting the energy of a vibrating plate at seabed may prove impractical.

商品描述(中文翻譯)

如其他研究者所指出,海洋工程中的混合結構是基於平坦的混凝土基礎。由於波浪作用,這些基礎的上下表面承受不同的壓力分佈。因此,底部表面會受到鞍形壓力分佈的影響,導致基礎上產生巨大的力量。事實上,在北海的多個海上平台上觀察到了這種巨大的力量。

為了將問題轉化為優勢,本研究的概念旨在開發一個綜合系統,以在海床上利用和收集海洋波浪能量。長期的目標是開發可以用作執行器或傳感器的綜合裝置,由於其低製造成本,可以大量應用於海洋工程系統的控制,例如海洋可再生電力廠,或海洋過程的監測,例如海洋學感測。

所提議系統的一個關鍵元素是非線性耦合電機械振盪器單元,其動力學在本研究中以新穎的方法進行探討。該振盪器的基本特性使其成為涉及海洋傳感器的應用的優秀選擇,這些傳感器由一個乾式驅動的電氣定子和一個物理上與之分離的濕式驅動負載機構組成。如果沒有這樣的單元以低成本和大量供應,則在海床上收集振動板的能量可能會變得不切實際。