Showing posts with label tolerance. Show all posts
Showing posts with label tolerance. Show all posts

Thursday, September 2, 2010

Mechanical Tolerance Stackup and Analysis

Mechanical Tolerance Stackup and Analysis Review


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Mechanical Tolerance Stackup and Analysis Feature

Written by one of the foremost authorities in the field, Mechanical Tolerance Stackup and Analysis presents proven and easy-to-use methods for determining whether selected dimensioning and tolerancing schemes will yield functional parts and assemblies and the most practical procedure to communicate the results. Using a variety of examples and real-world design challenges that stress the importance of a standardized approach to tolerance stackups, the book helps readers develop effective problem-solving and analytical skills.

Demonstrates how to perform "what-if" scenarios to evaluate the effects of changing tolerancing schemes, tolerance values, and assembly sequences.

Mechanical Tolerance Stackup and Analysis is an outstanding and must-have reference for all mechanical, manufacturing, design, quality control, project, process, industrial, automation, and assembly engineers and managers; and upper-level undergraduate, graduate, and continuing-education students in these disciplines.


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Sunday, March 28, 2010

Coding Approaches to Fault Tolerance in Combinational and Dynamic Systems (The Springer International Series in Engineering and Computer Science)

Coding Approaches to Fault Tolerance in Combinational and Dynamic Systems (The Springer International Series in Engineering and Computer Science) Review


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Coding Approaches to Fault Tolerance in Combinational and Dynamic Systems (The Springer International Series in Engineering and Computer Science) Feature

Coding Approaches to Fault Tolerance in Combinational and Dynamic Systems describes coding approaches for designing fault-tolerant systems, i.e., systems that exhibit structured redundancy that enables them to distinguish between correct and incorrect results or between valid and invalid states. Since redundancy is expensive and counter-intuitive to the traditional notion of system design, the book focuses on resource-efficient methodologies that avoid excessive use of redundancy by exploiting the algorithmic/dynamic structure of a particular combinational or dynamic system. The first part of Coding Approaches to Fault Tolerance in Combinational and Dynamic Systems focuses on fault-tolerant combinational systems providing a review of von Neumann's classical work on Probabilistic Logics (including some more recent work on noisy gates) and describing the use of arithmetic coding and algorithm-based fault-tolerant schemes in algebraic settings. The second part of the book focuses on fault tolerance in dynamic systems. Coding Approaches to Fault Tolerance in Combinational and Dynamic Systems also discusses how, in a dynamic system setting, one can relax the traditional assumption that the error-correcting mechanism is fault-free by using distributed error correcting mechanisms. The final chapter presents a methodology for fault diagnosis in discrete event systems that are described by Petri net models; coding techniques are used to quickly detect and identify failures. From the Foreword: "Hadjicostis has significantly expanded the setting to processes occurring in more general algebraic and dynamic systems... The book responds to the growing need to handle faults in complex digital chips and complex networked systems, and to consider the effects of faults at the design stage rather than afterwards." George Verghese, Massachusetts Institute of Technology Coding Approaches to Fault Tolerance in Combinational and Dynamic Systems will be of interest to both researchers and practitioners in the area of fault tolerance, systems design and control.


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Monday, December 21, 2009

Reliability of Computer Systems and Networks: Fault Tolerance, Analysis, and Design

Reliability of Computer Systems and Networks: Fault Tolerance, Analysis, and Design Review


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Reliability of Computer Systems and Networks: Fault Tolerance, Analysis, and Design Feature

With computers becoming embedded as controllers in everything from network servers to the routing of subway schedules to NASA missions, there is a critical need to ensure that systems continue to function even when a component fails. In this book, bestselling author Martin Shooman draws on his expertise in reliability engineering and software engineering to provide a complete and authoritative look at fault tolerant computing. He clearly explains all fundamentals, including how to use redundant elements in system design to ensure the reliability of computer systems and networks.
Market: Systems and Networking Engineers, Computer Programmers, IT Professionals.


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