On-line compensation in a digital Coriolis mass flow meter

For many years it has been demonstrated that the use of digital technology, particularly embedded microprocessors, can improve flowmeter performance in various ways (e.g. temperature compensation, elimination of drift, generation of engineering units, diagnostics). A self-validating or SEVA sensor u...

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Main Author: Henry, M
Format: Journal article
Published: Elsevier 2001
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author Henry, M
author_facet Henry, M
author_sort Henry, M
collection OXFORD
description For many years it has been demonstrated that the use of digital technology, particularly embedded microprocessors, can improve flowmeter performance in various ways (e.g. temperature compensation, elimination of drift, generation of engineering units, diagnostics). A self-validating or SEVA sensor uses in-built processing power to generate generic metrics of measurement quality, based on on-line uncertainty. This uncertainty includes all factors effecting the on-line measurement, including diagnostics but also manufacturing aspects such as the components used and the characterisation procedure. This paper describes a prototype SEVA coriolis mass flow meter transmitter built primarily from digital components, which provides compensation for both faults and manufacturing limitations. A technique to compensate for drift and imbalance in the transmitter front-end circuitry is described in detail. The prototype has been developed using a hardware/software co-design approach in which virtually all aspects of instrument design are described in software, but which can be implemented flexibly in either hardware or software according to economic requirements. This approach offers manufacturers the opportunity of incorporating the latest components into their products rapidly in order to remain competitive.
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spelling oxford-uuid:604d50f0-780f-48cb-8a78-11b2e0b906152022-03-26T17:52:40ZOn-line compensation in a digital Coriolis mass flow meterJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:604d50f0-780f-48cb-8a78-11b2e0b90615Symplectic Elements at OxfordElsevier2001Henry, MFor many years it has been demonstrated that the use of digital technology, particularly embedded microprocessors, can improve flowmeter performance in various ways (e.g. temperature compensation, elimination of drift, generation of engineering units, diagnostics). A self-validating or SEVA sensor uses in-built processing power to generate generic metrics of measurement quality, based on on-line uncertainty. This uncertainty includes all factors effecting the on-line measurement, including diagnostics but also manufacturing aspects such as the components used and the characterisation procedure. This paper describes a prototype SEVA coriolis mass flow meter transmitter built primarily from digital components, which provides compensation for both faults and manufacturing limitations. A technique to compensate for drift and imbalance in the transmitter front-end circuitry is described in detail. The prototype has been developed using a hardware/software co-design approach in which virtually all aspects of instrument design are described in software, but which can be implemented flexibly in either hardware or software according to economic requirements. This approach offers manufacturers the opportunity of incorporating the latest components into their products rapidly in order to remain competitive.
spellingShingle Henry, M
On-line compensation in a digital Coriolis mass flow meter
title On-line compensation in a digital Coriolis mass flow meter
title_full On-line compensation in a digital Coriolis mass flow meter
title_fullStr On-line compensation in a digital Coriolis mass flow meter
title_full_unstemmed On-line compensation in a digital Coriolis mass flow meter
title_short On-line compensation in a digital Coriolis mass flow meter
title_sort on line compensation in a digital coriolis mass flow meter
work_keys_str_mv AT henrym onlinecompensationinadigitalcoriolismassflowmeter