Fault Diagnosis in Robotic and Industrial Systems
暫譯: 機器人與工業系統中的故障診斷

Gerasimos G Rigatos

  • 出版商: CreateSpace Independ
  • 出版日期: 2012-11-02
  • 售價: $3,350
  • 貴賓價: 9.5$3,183
  • 語言: 英文
  • 頁數: 210
  • 裝訂: Paperback
  • ISBN: 1461098742
  • ISBN-13: 9781461098744
  • 相關分類: 機器人製作 Robots
  • 海外代購書籍(需單獨結帳)

相關主題

商品描述

Fault detection and isolation is an important topic for researchers in the area of robotics and for industrial systems engineers. The need for a systematic method that will permit preventive maintenance through the diagnosis of incipient faults is obvious. At the same time it is desirable to reduce the false alarms rate so as to avoid unnecessary and costly interruptions of industrial processes and robotic tasks. The proposed book aims at analyzing recent advances in the area of fault diagnosis for robotic and industrial systems. There are totally 9 chapters in this book. Chapter 1 deals with supervision for the safe navigation of autonomous robots in a natural environment. Fault diagnosis and natural environment perception are used at different levels within a supervisor architecture and real operation is demonstrated on an autonomous tractor driving in an orchard. Chapter 2 gives an introduction to fault tolerant sensor systems which is based on the Failure Modes and Effects Analysis (FMEA) method. Chapter 3 aims at analyzing and implementing new solutions for the problem of distributed estimation for condition monitoring of nonlinear dynamical systems (e.g. automatic ground vehicles, unmanned surface or underwater vessels and unmanned aerial vehicles), so as to enable early detection of faults and the take up of efficient restoration measures. To this end, the development of distributed nonlinear state estimation and distributed fault detection and isolation (FDI) tools is proposed. Chapter 4 proposes so-called logic-dynamic approach for fault diagnosis in industrial systems described by nonlinear dynamic models with non-differentiable nonlinearities. The approach allows solving the problem of fault diagnosis is nonlinear systems using well-known linear methods. In Chapter 5, observer design for nonlinear systems described by a Takagi-Sugeno model with unmeasurable premise variables is proposed. Furthermore, a fault tolerant controller is proposed for such a system in order to preserve some performances of the system by trajectory tracking in faulty situations. Chapter 6 explains and demonstrates the utilization of different nonlinear-dynamics-based procedures for the purposes of structural health monitoring as well as for monitoring of robot joints based on Vibration-based Health Monitoring (VHM) methods In Chapter 7, vibrations picked from spalled defective rolling element bearings is presented. It uses a four stage processing algorithm to detect and diagnose the defective component in rolling element. In Chapter 8, the problem of fault diagnosis with parity equations is considered for nonlinear dynamic systems whose models are taken in the form of ordinary differential equations. The active and passive approaches are involved to achieve the robustness of the diagnostic procedure Finally, Chapter 9 proposes a graphical method for diagnosis of nonlinear systems. The proposed method is based on a 2D signature obtained by measurements projection over some moving time-window. This projection highlights what happens inside the system and enables the diagnosis of abnormal behaviors. This book is suitable for advanced undergraduate students and postgraduate students. It takes a practical approach rather than a conceptual approach. It offers a truly reader-friendly way to get to the subject related to the semantic web, making it the ideal resources for any student who is new to this subject and providing a definitive guide to anyone in this vibrant and evolving discipline. This book is an invaluable companion for students from their first encounter with the subject to more advanced studies, while the high quality artworks are designed to present the key concepts with simplicity, clarity and consistency.

商品描述(中文翻譯)

故障檢測與隔離是機器人領域及工業系統工程師的重要研究主題。顯而易見,系統化的方法能夠通過診斷初期故障來進行預防性維護的需求是迫切的。同時,降低誤報率以避免不必要且昂貴的工業過程和機器人任務中斷也是可取的。本書旨在分析機器人和工業系統故障診斷領域的最新進展。本書共分為九章。第一章探討了在自然環境中自主機器人的安全導航監控。故障診斷和自然環境感知在監控架構的不同層級中使用,並在一台自主拖拉機在果園中行駛的實際操作中進行了演示。第二章介紹了基於故障模式與影響分析(FMEA)方法的容錯傳感器系統。第三章旨在分析和實施針對非線性動態系統(例如自動地面車輛、無人水面或水下船隻及無人飛行器)狀態監測的分佈式估計問題的新解決方案,以便能夠及早檢測故障並採取有效的恢復措施。為此,提出了分佈式非線性狀態估計和分佈式故障檢測與隔離(FDI)工具的開發。第四章提出了一種所謂的邏輯動態方法,用於對由具有不可微分非線性的非線性動態模型描述的工業系統進行故障診斷。該方法允許使用知名的線性方法來解決非線性系統的故障診斷問題。第五章提出了對由Takagi-Sugeno模型描述的非線性系統進行觀察者設計,該模型具有不可測量的前提變數。此外,還為此類系統提出了一種容錯控制器,以在故障情況下通過軌跡跟蹤來保留系統的一些性能。第六章解釋並演示了不同基於非線性動力學的程序在結構健康監測以及基於振動健康監測(VHM)方法的機器人關節監測中的應用。在第七章中,介紹了從剝落的缺陷滾動元件軸承中提取的振動。它使用四階段處理算法來檢測和診斷滾動元件中的缺陷組件。在第八章中,考慮了使用奇偶方程進行故障診斷的問題,針對的非線性動態系統的模型以常微分方程的形式呈現。採用了主動和被動方法以實現診斷程序的穩健性。最後,第九章提出了一種用於非線性系統診斷的圖形方法。該方法基於通過某些移動時間窗口的測量投影獲得的2D簽名。這一投影突顯了系統內部發生的情況,並使得異常行為的診斷成為可能。本書適合高年級本科生和研究生。它採取實用的方法而非概念性的方法。它提供了一種真正友好的方式來接觸與語義網相關的主題,使其成為任何對此主題感興趣的學生的理想資源,並為任何在這個充滿活力和不斷發展的學科中的人提供了明確的指導。本書是學生從首次接觸該主題到更高級研究的寶貴伴侶,而高品質的插圖旨在以簡單、清晰和一致的方式呈現關鍵概念。