Technology of Semiactive Devices and Applications in Vibration Mitigation
暫譯: 半主動裝置技術及其在振動減緩中的應用
Fabio Casciati, Georges Magonette, Francesco Marazzi
- 出版商: Wiley
- 出版日期: 2006-04-01
- 售價: $5,210
- 貴賓價: 9.5 折 $4,950
- 語言: 英文
- 頁數: 268
- 裝訂: Hardcover
- ISBN: 0470022892
- ISBN-13: 9780470022894
海外代購書籍(需單獨結帳)
相關主題
商品描述
Description
Researchers have studied many methods of using active and passive control devices for absorbing vibratory energy. Active devices, while providing significant reductions in structural motion, typically require large (and often multiply-redundant) power sources, and thereby raise concerns about stability. Passive devices are fixed and cannot be modified based on information of excitation or structural response. Semiactive devices on the other hand can provide significant vibration reductions comparable to those of active devices but with substantially reduced power requirements and in a stable manner.Technology of Semiactive Devices and Applications in Vibration Mitigation presents the most up-to-date research into semiactive control systems and illustrates case studies showing their implementation and effectiveness in mitigating vibration. The material is presented in a way that people not familiar with control or structural dynamics can easily understand.
Connecting structural dynamics with control, this book:
- Provides a history of semiactive control and a bibliographic review of the most common semiactive control strategies.
- Presents state-of-the-art semiactive control systems and illustrates several case studies showing their implementation and effectiveness to mitigate vibration.
- Illustrates applications related to noise attenuation, wind vibration damping and earthquake effects mitigation amongst others.
- Offers a detailed comparison between collocated and non-collocated systems.
- Formulates the design concepts and control algorithms in simple and readable language.
- Includes an appendix that contains critical considerations about semiactive devices and methods of evaluation of the original damping of a structure.
Technology of Semiactive Devices and Applications in Vibration Mitigation is a must-have resource for researchers, practitioners and design engineers working in civil, automotive and mechanical engineering. In addition it is undoubtedly the key reference for all postgraduate students studying in the field.
Table of Contents
List of Figures.List of Tables.
List of Algorithms.
List of Symbols.
Introduction.
Objectives.
Organization of the Book.
1 Reliability, Robustness and Structural Control.
1.1 Preliminary Concepts.
1.2 Definitions.
1.3 System Representation.
1.4 A Comparison of Passive, Active and Semiactive Control Strategies.
2 Collocated and Non-collocated Systems.
2.1 Introduction.
2.2 Definition of Collocated System.
2.3 Centralized and Non-centralized Systems.
2.4 Linear and Non-linear Systems.
2.5 The Problem of Spillover.
2.6 Advantages and Disadvantages of Collocated and Non-collocated Systems.
2.7 A Numerical Comparison.
3 Semiactive Devices.
3.1 The Basic Idea and a Brief History.
3.2 Variable Viscous Devices.
3.3 Variable Stiffness Devices.
3.4 Magnetorheological Devices.
3.5 Friction Devices.
3.6 Tuned Liquid Dampers.
3.7 Electro-inductive Device.
3.8 Air-jet Actuators.
3.9 SMA Actuators.
4 Semiactive Control Laws.
4.1 Control Strategies and Algorithms for Semiactive Damping.
4.2 Implementation Schemes.
5 Implementation of Semiactive Control Strategies.
5.1 Introduction.
5.2 Hardware Control Implementation.
5.3 Real-time Software.
5.4 Non-centralized Control Versus Collocated Systems.
6 Experimental Verification.
6.1 Introduction.
6.2 The Challenges of Performance-based Design in Structural Testing.
6.3 Base-isolated Buildings and Bridges.
6.4 Supplemental Damping Devices.
6.5 Experimental Methods in Structural Dynamics.
6.6 Assessment of Structural Control Devices.
7 Stability and Foreseen Developments.
7.1 Preliminary Concepts.
7.2 Semiactive Features.
7.3 Conclusions.
Appendix A: Damping.
A.1 Types of Damping.
A.2 Why Have a Damping Matrix?
A.3 Rayleigh Damping.
Bibliography.
Index.
商品描述(中文翻譯)
**描述**
研究人員已經研究了許多使用主動和被動控制裝置來吸收振動能量的方法。主動裝置雖然能顯著減少結構運動,但通常需要大型(且往往是多重冗餘的)電源,因而引發穩定性方面的擔憂。被動裝置是固定的,無法根據激勵或結構反應的信息進行修改。另一方面,半主動裝置可以提供與主動裝置相當的顯著振動減少,但其功率需求大幅降低且運行穩定。
《半主動裝置技術及其在振動減緩中的應用》展示了最新的半主動控制系統研究,並通過案例研究說明其在減緩振動方面的實施和有效性。該材料以易於理解的方式呈現,適合對控制或結構動力學不熟悉的人士。
本書將結構動力學與控制相連接:
- 提供半主動控制的歷史及最常見的半主動控制策略的文獻回顧。
- 展示最先進的半主動控制系統,並說明幾個案例研究,顯示其在減緩振動方面的實施和有效性。
- 說明與噪音衰減、風振動阻尼和地震影響減緩等相關的應用。
- 提供共置系統與非共置系統的詳細比較。
- 以簡單易讀的語言制定設計概念和控制算法。
- 包含附錄,涵蓋有關半主動裝置的關鍵考量及結構原始阻尼的評估方法。
《半主動裝置技術及其在振動減緩中的應用》是土木、汽車和機械工程領域研究人員、實務工作者和設計工程師必備的資源。此外,對於所有在該領域學習的研究生來說,這無疑是關鍵參考資料。
**目錄**
- 圖表清單
- 表格清單
- 算法清單
- 符號清單
- 引言
- 目標
- 本書組織
- 1 可靠性、穩健性與結構控制
- 1.1 初步概念
- 1.2 定義
- 1.3 系統表示
- 1.4 被動、主動與半主動控制策略的比較
- 2 共置系統與非共置系統
- 2.1 引言
- 2.2 共置系統的定義
- 2.3 集中式與非集中式系統
- 2.4 線性與非線性系統
- 2.5 溢出問題
- 2.6 共置系統與非共置系統的優缺點
- 2.7 數值比較
- 3 半主動裝置
- 3.1 基本概念及簡史
- 3.2 可變黏性裝置
- 3.3 可變剛度裝置
- 3.4 磁流變裝置
- 3.5 摩擦裝置
- 3.6 調諧液體阻尼器
- 3.7 電感裝置
- 3.8 空氣噴射致動器
- 3.9 SMA致動器
- 4 半主動控制法則
- 4.1 半主動阻尼的控制策略與算法
- 4.2 實施方案
- 5 半主動控制策略的實施
- 5.1 引言
- 5.2 硬體控制實施
- 5.3 實時軟體
- 5.4 非集中控制與共置系統的比較
- 6 實驗驗證
- 6.1 引言
- 6.2 結構測試中基於性能的設計挑戰
- 6.3 基礎隔震建築與橋樑
- 6.4 補充阻尼裝置
- 6.5 結構動力學中的實驗方法
- 6.6 結構控制裝置的評估
- 7 穩定性與預期發展
- 7.1 初步概念
- 7.2 半主動特徵
- 7.3 結論
- 附錄A:阻尼
- A.1 阻尼類型
- A.2 為何需要阻尼矩陣?
- A.3 雷利阻尼
- 參考文獻
- 索引