Sensor array current consumption optimizer with Gradient Descent

This article aims to show an example realization of Gradient descent algorithm for power supply consumption optimization in embedded sensor systems by means of adjusting measurement cycles to meet a given user target input. When execution is complete, the tool returns measurement cycle information t...

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Published in2023 XXXII International Scientific Conference Electronics (ET) pp. 1 - 4
Main Author Shabanski, Boyan Y.
Format Conference Proceeding
LanguageEnglish
Published IEEE 13.09.2023
Subjects
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DOI10.1109/ET59121.2023.10279770

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Abstract This article aims to show an example realization of Gradient descent algorithm for power supply consumption optimization in embedded sensor systems by means of adjusting measurement cycles to meet a given user target input. When execution is complete, the tool returns measurement cycle information that satisfy the given user target for overall current consumption. Example implementation is done in Python.
AbstractList This article aims to show an example realization of Gradient descent algorithm for power supply consumption optimization in embedded sensor systems by means of adjusting measurement cycles to meet a given user target input. When execution is complete, the tool returns measurement cycle information that satisfy the given user target for overall current consumption. Example implementation is done in Python.
Author Shabanski, Boyan Y.
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  organization: Technical University of Varna,Faculty of Computer Sciences and Automation,Department of Electronics and Microelectronics,Varna,Bulgaria,9000
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Snippet This article aims to show an example realization of Gradient descent algorithm for power supply consumption optimization in embedded sensor systems by means of...
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SubjectTerms current consumption optimization
Current measurement
Electric potential
gradient descent
Power measurement
Power supplies
python
Runtime
Sensor systems
Time measurement
Title Sensor array current consumption optimizer with Gradient Descent
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