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- W2095114170 abstract "ABSTRACT Control and measurement systems can comprise complex arrangements of electro-mechanical components which operate as sensor-to-readout chains. To achieve maximum automation capability of the host engineering systems, these instrumentation suites present challenges regarding alignment, calibration, and associated logistics. Accuracy of all components is also critical for use by knowledge-based condition assessment systems to form judgments regarding plant operation and maintenance. This paper presents a successful effort which supports these requirements. System calibration is the process that ensures that a measurement chain, consisting of inter-related components, is accurately monitoring an engineering parameter within a specified tolerance. This entails calibration of a measurement or control system as a unified entity, from endpoint to endpoint, having first performed any prerequisite alignments. This approach enhances system availability by reducing operational problems through preventive methods that ensure correct setting of control circuitry and alarms, as well as interchangeability of components and spares, and by providing troubleshooting techniques to solve certain emergent difficulties. System-level calibration concepts are described, in the form of an existing Navy program, along with a summary of benefits to Fleet operators and instrumentation support engineers. Lessons learned from this application, as they pertain to design and specification considerations, are also addressed. Examples of the relationship of calibration to today's and future technology are also given." @default.
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- W2095114170 date "1995-11-01" @default.
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- W2095114170 title "Optimizing Performance and Reliability of Automated Machinery Control Systems and Instrumentation" @default.
- W2095114170 doi "https://doi.org/10.1111/j.1559-3584.1995.tb03123.x" @default.
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