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REPRESENTATION OF SYSTEM FAILURE
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A. M. Freudenthal analytical approximation assumed bounds on system chapter components crest statistics critical wear level curves D. A. Smith dependent failure rate detector digitally computed Emanuel Parzen empirical exceedance probability failure mechanisms Fatigue and Reliability Fatigue Sensitivity first-passage gamma distribution gaussian processes impulsive noise interval Laplace transform lifetime lower bound M. S. Bartlett median Mercer nonlinear normal number of cycles obtained operational system overload and wearout overload failure overload level parameters partial damage distributions partial wear Poisson prob probability density Q function R. F. Lambert random process random variable Rayleigh distribution Relevant to Fatigue reliability prediction renewal process renewal theory response processes risk function statistical independence system failure rate system reliability system response system wear T. I. Smits Technical Report thesis tion total wear ultimate load failure upper bound values wear distribution wear level wear-dependent failure rate wearout failure rates wearout reliability Weibull distribution