Intentional and Inherent Nonlinearities in Piezoelectric Energy Harvesting (壓電能量收集中的意圖性與固有非線性)

Rosso, Michele

  • 出版商: Springer
  • 出版日期: 2024-03-02
  • 售價: $2,110
  • 貴賓價: 9.5$2,005
  • 語言: 英文
  • 頁數: 134
  • 裝訂: Quality Paper - also called trade paper
  • ISBN: 3031510453
  • ISBN-13: 9783031510458
  • 海外代購書籍(需單獨結帳)

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商品描述

This book presents recent research in the field of piezoelectric vibration energy harvesting in which intentionally designed nonlinearities as well as inherently present are widely considered. It provides an overview of the state-of-the-art, with a sharp classification into linear and nonlinear devices, and recalls the fundamentals of piezoelectricity and magnetostatics. A detailed treatment of linear and nonlinear mathematical modeling of piezoelectric harvesters is then developed to provide the reader with a wide range of modeling possibilities. Theoretical, computational, and experimental approaches to modeling the magnetic interaction are also provided. Several cases of innovative piezoelectric harvester designs based on magnetic interaction as a frequency up-conversion mechanism (FuC) are developed. Improvements of the magnetic FuC are proposed, in combination with indirect impacts as well as the manipulation of magnetic forces with novelty methods. Novel studies on the magnetic interaction itself and its implications for the dynamic behavior of the harvester are also summarized. The book provides an integrated view of theoretical, computational, and experimental research in this field, as such it can be useful for researchers interested in linear and nonlinear piezoelectric energy harvesting, for graduate courses on smart structures and devices, microsystems, and for designers.

商品描述(中文翻譯)

本書介紹了壓電振動能量收集領域的最新研究,廣泛考慮了故意設計的非線性以及固有存在的非線性。它提供了最先進技術的概述,並將設備清晰地分類為線性和非線性,同時回顧了壓電效應和靜磁學的基本原理。接著,詳細探討了壓電能量收集器的線性和非線性數學建模,以提供讀者多樣的建模可能性。書中還提供了對磁性互動建模的理論、計算和實驗方法。幾個基於磁性互動作為頻率上變換機制(FuC)的創新壓電能量收集器設計案例也被開發出來。提出了磁性FuC的改進,結合間接影響以及以新穎方法操控磁力。書中還總結了對磁性互動本身及其對收集器動態行為的影響的創新研究。本書提供了該領域理論、計算和實驗研究的綜合視角,因此對於對線性和非線性壓電能量收集感興趣的研究人員、智能結構和設備、微系統的研究生課程以及設計師都具有實用價值。