Embedded Sensors and Controls to Improve Component Performance and Reliability Conceptual Design Report
Author(s) -
R.A. Kisner,
Alexander Melin,
Timothy A. Burress,
David Fugate,
David Holcomb,
J. B. Wilgen,
John Miller,
D.F. Wilson,
Paolo Silva,
Lynsie J Whitlow,
F.J. Peretz
Publication year - 2012
Publication title -
osti oai (u.s. department of energy office of scientific and technical information)
Language(s) - English
Resource type - Reports
DOI - 10.2172/1054147
Subject(s) - reliability engineering , reliability (semiconductor) , component (thermodynamics) , systems engineering , conceptual design , instrumentation (computer programming) , computer science , engineering , power (physics) , operating system , physics , quantum mechanics , human–computer interaction , thermodynamics
The objective of this project is to demonstrate improved reliability and increased performance made possible by deeply embedding instrumentation and controls (I&C) in nuclear power plant (NPP) components and systems. The project is employing a highly instrumented canned rotor, magnetic bearing, fluoride salt pump as its I&C technology demonstration platform. I&C is intimately part of the basic millisecond-by-millisecond functioning of the system; treating I&C as an integral part of the system design is innovative and will allow significant improvement in capabilities and performance. As systems become more complex and greater performance is required, traditional I&C design techniques become inadequate and more advanced I&C needs to be applied. New I&C techniques enable optimal and reliable performance and tolerance of noise and uncertainties in the system rather than merely monitoring quasistable performance. Traditionally, I&C has been incorporated in NPP components after the design is nearly complete; adequate performance was obtained through over-design. By incorporating I&C at the beginning of the design phase, the control system can provide superior performance and reliability and enable designs that are otherwise impossible. This report describes the progress and status of the project and provides a conceptual design overview for the platform to demonstrate the performance and reliability improvements enabled by advanced embedded I&C
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