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    On Generalisation of Dual-Thermocouple Sensor Characterisation to RTDs


    Brown, Colin, Kee, Robert J., Irwin, George and McLoone, Sean F. (2010) On Generalisation of Dual-Thermocouple Sensor Characterisation to RTDs. Melecon 2010 - 15th IEEE Mediterranean Electrotechnical Conference (11358337). pp. 991-996.

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    Abstract

    Intrusive temperature sensors such as thermocouples and resistance temperature detectors (RTDs) have become industry standards for simple and cost-effective temperature measurement. However, many situations require the use of physically robust and therefore low bandwidth temperature sensors. Much work has been published on dual-thermocouple thermometry as a means of obtaining increased sensor bandwidth from relatively robust thermocouples, which are assumed to have firstorder response. This contribution seeks to determine if RTDs, which are known to have approximately first-order response [1], can also be characterised using the dual-thermocouple approach. Experimental results show that the response of an RTD cannot be represented by a first-order model with sufficient accuracy to allow successful application of this method. Furthermore, simulation studies demonstrated that if a sensor exhibits even marginally second-order response, highly inaccurate temperature reconstructions follow. It is concluded that a higher-order model that more accurately reflects RTD response would be required for successful dual-RTD characterisation.
    Item Type: Article
    Keywords: Temperature sensors; thermocouples; bandwidth temperature sensors; dual-RTD characterisation; dual-thermocouple sensor characterisation; first-order response; resistance temperature detectors; second-order response;
    Academic Unit: Faculty of Science and Engineering > Electronic Engineering
    Item ID: 2320
    Depositing User: Sean McLoone
    Date Deposited: 11 Jan 2011 14:25
    Journal or Publication Title: Melecon 2010 - 15th IEEE Mediterranean Electrotechnical Conference
    Publisher: IEEE
    Refereed: Yes
    URI: https://mu.eprints-hosting.org/id/eprint/2320
    Use Licence: This item is available under a Creative Commons Attribution Non Commercial Share Alike Licence (CC BY-NC-SA). Details of this licence are available here

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