The Kta P Has


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Comprehensive Structural Integrity


Comprehensive Structural Integrity

Author: Ian Milne

language: en

Publisher: Elsevier

Release Date: 2003-07-25


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The aim of this major reference work is to provide a first point of entry to the literature for the researchers in any field relating to structural integrity in the form of a definitive research/reference tool which links the various sub-disciplines that comprise the whole of structural integrity. Special emphasis will be given to the interaction between mechanics and materials and structural integrity applications. Because of the interdisciplinary and applied nature of the work, it will be of interest to mechanical engineers and materials scientists from both academic and industrial backgrounds including bioengineering, interface engineering and nanotechnology. The scope of this work encompasses, but is not restricted to: fracture mechanics, fatigue, creep, materials, dynamics, environmental degradation, numerical methods, failure mechanisms and damage mechanics, interfacial fracture and nano-technology, structural analysis, surface behaviour and heart valves. The structures under consideration include: pressure vessels and piping, off-shore structures, gas installations and pipelines, chemical plants, aircraft, railways, bridges, plates and shells, electronic circuits, interfaces, nanotechnology, artificial organs, biomaterial prostheses, cast structures, mining... and more. Case studies will form an integral part of the work.

Modeling and Identification of Linear Parameter-Varying Systems


Modeling and Identification of Linear Parameter-Varying Systems

Author: Roland Toth

language: en

Publisher: Springer

Release Date: 2010-07-11


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Through the past 20 years, the framework of Linear Parameter-Varying (LPV) systems has become a promising system theoretical approach to handle the control of mildly nonlinear and especially position dependent systems which are common in mechatronic applications and in the process industry. The birth of this system class was initiated by the need of engineers to achieve better performance for nonlinear and time-varying dynamics, c- mon in many industrial applications, than what the classical framework of Linear Time-Invariant (LTI) control can provide. However, it was also a p- mary goal to preserve simplicity and “re-use” the powerful LTI results by extending them to the LPV case. The progress continued according to this philosophy and LPV control has become a well established ?eld with many promising applications. Unfortunately, modeling of LPV systems, especially based on measured data (which is called system identi?cation) has seen a limited development sincethebirthoftheframework. Currentlythisbottleneck oftheLPVfra- work is halting the transfer of the LPV theory into industrial use. Without good models that ful?ll the expectations of the users and without the und- standing how these models correspond to the dynamics of the application, it is di?cult to design high performance LPV control solutions. This book aims to bridge the gap between modeling and control by investigating the fundamental questions of LPV modeling and identi?cation. It explores the missing details of the LPV system theory that have hindered the formu- tion of a well established identi?cation framework.

The Aṣṭādhyāyī of Pāṇini with Translation and Explanatory Notes


The Aṣṭādhyāyī of Pāṇini with Translation and Explanatory Notes

Author: Pāṇini

language: en

Publisher: Sahitya Akademi

Release Date: 1991


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Panini Took His Place In A Line Of Grammarians And Teachers Of Sanskrit. He Is Known To Have Mentioned Ten Predecessors By Name. It Goes Without Saying That He Must Have Borrowed A Considerable Quantity Of Material, Whether Literally Or In A Modified Form. But All This Can Not Hide His Originality As A System-Builder, His Amazing Ability To Formulate A Comprehensive Grammatical System.