Reliability of Avionics Systems.
E. Keonjian, W. T. Sumerlin, M. M. Tall, Jacob J. Bussolini, Brian Baker
Abstract
E. Keonjian, W. T. Sumerlin, M. M. Tall, Jacob J. Bussolini, Brian Baker
Abstract
;Contents: Techniques of system reliability estimation, including failure effect analysis (failure consequence); Correlation between estimation tests and system operating data; Effectiveness of reliability program elements; Cost effectiveness of built-in test provisions; High reliability design techniques applied to the lunar module; Testing the reliability of avionics equipment for spacecraft application; Methods of specifying and controlling design reliability; Relationships between program test and user support costs; System operational considerations and their relationship to the test process; La technique des essais acceleres; The benefits of a totally integrated reliability test program; Operational considerations and systems reliability.
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;Contents: Techniques of system reliability estimation, including failure effect analysis (failure consequence); Correlation between estimation tests and system operating data; Effectiveness of reliability program elements; Cost effectiveness of built-in test provisions; High reliability design techniques applied to the lunar module; Testing the reliability of avionics equipment for spacecraft application; Methods of specifying and controlling design reliability; Relationships between program test and user support costs; System operational considerations and their relationship to the test process; La technique des essais acceleres; The benefits of a totally integrated reliability test program; Operational considerations and systems reliability.
Key concepts: Avionics, Reliability engineering, Reliability (semiconductor), Engineering, Process (computing), Computer science, Power (physics), Quantum mechanics