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      A Novel Telemetry System for Real Time, Ship Main Propulsion Power Measurement

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          Abstract

          Modern ships are required to increase the energy efficiency and minimize fuel consumption. This paper presents the construction, main properties and exemplary measurement results of a novel system intended for main shaft power monitoring. The telemetry system consists of the stationary part, responsible for wireless supply energy transfer to the rotating part. Additional functions of the stationery unit include radio-based, bidirectional communication with the rotating, microcontroller-based unit, and Modbus-based communication with the graphical user interface. The non-stationary (rotating) part receives the necessary energy using the wireless transmission and performs the torque and speed measurement using strain gauge and a special setup of the wireless energy system. A novel system of flexible printed circuit board (PCB) coils is used for wireless energy transmission and increases the flexibility of the device while minimizing the necessary size, weight, and costs of the setup. The microcontroller unit used for measurements allows proper sampling of highly dynamic signals and can be used for advanced drive system diagnostics or as a typical power monitoring device. Such unit was installed on a ferry and operation was monitored for several sea trips. Main results depict characteristic power data referenced to vessel speed and specific fuel oil consumption (SFOC). Proposed system construction allows to reduce system costs and provides stable readings for long period of operation.

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          Variation and consistency of Young’s modulus in steel

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            Non-contact torsion sensor using fibre Bragg gratings

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              Measuring Torque and Temperature in a Rotating Shaft Using Commercial SAW Sensors

              Real-time monitoring of torque in a rotating shaft is not easy to implement with technologies such as optic fiber sensors or strain gages. Surface acoustic wave (SAW) sensors are wireless and passive and can be used to monitor strain in moving parts. Commercial solutions (sensors, antennas and interrogation unit) can easily be purchased from some companies; however, they are not customized and may not meet the specificity of the measurements. In order to evaluate the adequacy of commercial off-the-shelf (COTS) solutions, temperature and strain sensors fabricated by SENSeOR (Besançon, France) were mounted on a load cell. The sensors were calibrated using a thermal chamber and a universal testing machine. The load cell was then assembled together with a steel shaft that rotated at different speeds inside an oven. The commercial antennas were replaced with an RF (radio frequency) coupler and the sensors were interrogated with the commercial interrogation unit. The influence of rotation in the accuracy on the measurements, as well as the adequacy of the sensors structure, was evaluated. It can be concluded that SAW sensors can be used to measure temperature or torque in a rotating environment; however, some customization of the components is required in order to overcome the limitations posed by COTS sensing solutions.
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                Author and article information

                Journal
                Sensors (Basel)
                Sensors (Basel)
                sensors
                Sensors (Basel, Switzerland)
                MDPI
                1424-8220
                02 November 2019
                November 2019
                : 19
                : 21
                : 4771
                Affiliations
                [1 ]Electrical Engineering Department, West Pomeranian University of Technology, Szczecin, al. Piastów 17, 70-310 Szczecin, Poland; michal.bonislawski@ 123456zut.edu.pl
                [2 ]Maritime University of Szczecin, Mechanical Engineering Department, Wały Chrobrego, 1-2 Szczecin, Poland; t.borkowski@ 123456am.szczecin.pl (T.B.); p.kowalak@ 123456am.szczecin.pl (P.K.)
                Author notes
                [* ]Correspondence: mholub@ 123456zut.edu.pl ; Tel.: +48-449-4693
                Author information
                https://orcid.org/0000-0001-9441-0219
                https://orcid.org/0000-0001-5985-6370
                https://orcid.org/0000-0003-1370-2231
                Article
                sensors-19-04771
                10.3390/s19214771
                6864780
                31684075
                a39e161c-e562-4b6b-9c99-11b39577ab85
                © 2019 by the authors.

                Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license ( http://creativecommons.org/licenses/by/4.0/).

                History
                : 28 August 2019
                : 30 October 2019
                Categories
                Article

                Biomedical engineering
                shaft power measurement,telemetry systems,shipbuilding industry,wireless power transmission

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