FIELD: aviation; measurement.
SUBSTANCE: group of inventions relates to methods and devices for monitoring and control, during operation and maintenance of aircraft equipment (AE), for which it is required to determine optimal periods of control and maintenance of articles, which provide the required reliability and readiness of articles for use. Disclosed is a method including determining the state of an object of equipment - an operable state, a state of recovery under operating conditions, when on the basis of performed diagnostics and detection of deviations of separate characteristics and parameters of equipment from required values performing maintenance works, state of early suspension from operation, when due to a malfunction, replacement of individual units and elements of the equipment object is carried out and the state of overhaul as a result of critical wear of the equipment object, determination of intensity of faults eliminated during operation, intensity of faults, which led to early suspension from operation, intensity of overhauls, intensity of recovery of serviceable state in operating conditions, intensity of recovery of serviceable state after early suspension from operation and intensity of recovery of serviceable state as a result of overhaul, wherein the value of the operational readiness characteristic of the equipment is determined by formula , where A is a characteristic taking into account downtime of the equipment object, which is in overhaul, early removal from operation or restoration in operation, B is a characteristic taking into account the ratio of values of overhaul life and duration of overhaul of the equipment object.
EFFECT: high accuracy of determining the value of the integrated reliability characteristic ("operational readiness factor") of the equipment by creating a method and device which take into account the time spent on restoring the operability of the equipment object: under operating conditions (OOC) in conditions of early suspension from operation (ESO); in conditions of scheduled overhaul (OH).
2 cl, 2 dwg
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Authors
Dates
2024-06-05—Published
2024-02-20—Filed