Integrated System Health Management: Pilot Operational Implementation in a Rocket Engine Test Stand
Author(s) -
Fernando Figueroa,
John Schmalzel,
Jonathan A. Morris,
Mark Turowski,
Richard Franzl
Publication year - 2010
Publication title -
aiaa infotech @ aerospace
Language(s) - English
Resource type - Conference proceedings
DOI - 10.2514/6.2010-3454
Subject(s) - rocket engine , aeronautics , test (biology) , rocket (weapon) , systems engineering , computer science , aerospace engineering , system testing , automotive engineering , engineering , software engineering , paleontology , biology
This paper describes a credible implementation of integrated system health management (ISHM) capability, as a pilot operational system. Important core elements that make possible fielding and evolution of ISHM capability have been validated in a rocket engine test stand, encompassing all phases of operation: stand-by, pre-test, test, and post-test. The core elements include an architecture (hardware/software) for ISHM, gateways for streaming real-time data from the data acquisition system into the ISHM system, automated configuration management employing transducer electronic data sheets (TEDS?s) adhering to the IEEE 1451.4 Standard for Smart Sensors and Actuators, broadcasting and capture of sensor measurements and health information adhering to the IEEE 1451.1 Standard for Smart Sensors and Actuators, user interfaces for management of redlines/bluelines, and establishment of a health assessment database system (HADS) and browser for extensive post-test analysis. The ISHM system was installed in the Test Control Room, where test operators were exposed to the capability. All functionalities of the pilot implementation were validated during testing and in post-test data streaming through the ISHM system. The implementation enabled significant improvements in awareness about the status of the test stand, and events and their causes/consequences. The architecture and software elements embody a systems engineering, knowledge-based approach; in conjunction with object-oriented environments. These qualities are permitting systematic augmentation of the capability and scaling to encompass other subsystems.
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