2020
DOI: 10.1109/tla.2020.9049472
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Comparative Analysis of Current Transducers for Development of Smart Plug through Rank Order Centroid Method

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Cited by 5 publications
(2 citation statements)
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“…In the simulated experimental rig, V 1 and V 2 are the DC power supplies, that work in CV mode (constant-voltage), with 5 V output for the transistor base and 20 V output for the RL represented by the load resistor of 4 . The 5 k potentiometer marked with A is used to adjust the current entering the transistor's base, and thus according to the β (h FE ) amplification factor of the transistor, it will allow a greater or a smaller CE (collector-emitter) current to flow through the RL [6].…”
Section: Electronic and Electrical Measurementsmentioning
confidence: 99%
“…In the simulated experimental rig, V 1 and V 2 are the DC power supplies, that work in CV mode (constant-voltage), with 5 V output for the transistor base and 20 V output for the RL represented by the load resistor of 4 . The 5 k potentiometer marked with A is used to adjust the current entering the transistor's base, and thus according to the β (h FE ) amplification factor of the transistor, it will allow a greater or a smaller CE (collector-emitter) current to flow through the RL [6].…”
Section: Electronic and Electrical Measurementsmentioning
confidence: 99%
“…In another work by Kim et al 11 , ROC was utilized alongside other weight determination techniques to assign maintenance demand weights based on traffic load classifications. Ribeiro et al 12 utilized the ROC method to select appropriate current transducers for a smart plug project development. Yadav et al proposed a novel approach involving the use of a grey-wolf optimizer and ROC-based technique to reduce the order of robotic-cycle controller 13 .…”
mentioning
confidence: 99%