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1
Introduction
2
Internet of Things
3
Current sensors
4
About me
5
Device life cycle
6
Predictability resilience
7
Recharge cycles
8
Energy during design
9
Questions
10
Measuring energy production
11
Results
12
Batteryless systems
13
Compatibility
14
Leakage
15
Reliability
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Privacy
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Data Streaming
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Public Data
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Data Acquisition
20
Training Results
21
Cold Start
22
Demo
23
Collaboration
24
Execution time energy
25
Strategic partners
Description:
Explore a comprehensive talk on light-powered tinyML and batteryless machine learning systems. Delve into the growth of energy harvesting technologies and their potential applications in embedded machine learning and IoT. Learn about a design methodology for smart batteryless sensors capable of data collection, processing, and wireless transmission of inference results. Discover the newly developed gesture detection feature for the open-source MiroCard, and examine the cost-benefits and privacy implications of batteryless sensing systems. Gain insights into topics such as device life cycles, predictability resilience, energy considerations during design, measuring energy production, and the compatibility and reliability of batteryless systems. Understand the importance of data streaming, public data, and training results in this emerging field. Witness a demo and explore collaboration opportunities while considering execution time energy and strategic partnerships in the realm of light-powered tinyML. Read more

Machine Learning Without Batteries - The Case for Light-Powered TinyML

tinyML
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