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In this work a set of indexes able to define a suitable "footprint" of a Water jet system has been investigated. A on-line and non-intrusive monitoring and diagnostic system has been designed implementing an algorithm defined on the basis of the proposed indexes.
Starting from the correlation between electric input, mechanical and fluid-dynamic signals a set of index able to define a suitable "footprint" of a Waterjet system in normal working conditions has been defined. A on-line and non-intrusive monitoring and diagnostic system for this kind of device has been designed implementing an algorithm defined on the basis of the proposed "footprints".
Starting from the correlation between electric input, mechanical and fluid-dynamic signals a set of index able to define a suitable "footprint" of a water jet system in normal working conditions has been defined. An on-line and non-intrusive monitoring and diagnostic system for this kind of device has been designed implementing an algorithm defined on the basis of the proposed "footprints"
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