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Abstract: Distributed embedded computer systems are at the heart of many safety-critical systems such as airplanes, automobiles, and elevators. These systems have higher dependability requirements than general-purpose computer systems, as a system failure can cause human injury. However, these systems typically also have tight cost constraints, meaning there is a limit on the amount of design effort and redundant resources that can be spent making the system dependable. Traditional fault tolerance... (Update)

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2.5:   Unknown -   (Correct)
1.1:   A Framework for Scalable Analysis and Design of.. - Shelton, Koopman, Nace (2003)   (Correct)
0.5:   Using Architectural Properties to Model and Measure.. - Shelton, al. (2002)   (Correct)

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@misc{ -unknown,
  title = "Unknown",
  url = "citeseer.ist.psu.edu/663347.html" }
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60   On Evaluating the Performability of Degradable Computing Sys.. (context) - Meyer - 1978
56   QoS Negotiation in Real-Time Systems and its Application to .. - Abdelzaher, Atkins et al. - 1997
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39   Software Fault Tolerance (context) - Lyu - 1995
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26   Comparing the Robustness of POSIX Operating Systems (context) - Koopman, DeVale - 1999
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1   Building Distributed Scalable Dependable Real-Time Systems (context) - Ravindran, Welch et al. - 1997
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1   Effects of Failures on Gracefully Degradable Systems (context) - Losq - 1977

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High Performance Robust Computer Systems - DeVale (2001)   (Correct)
Performance of Cyclic Redundancy Codes for Embedded Networks - Chakravarty   (Correct)
Using Mission Graphs to Identify Mission Dependability.. - Martin (2001)   (Correct)

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