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IoT Enabled Grid Storage System
DOI:10.1109/CCECE49351.2022.9918346.png)
Abstract
En 中文
This paper summarizes the work performed towards the design and development of an Internet of Things (IoT) enabled grid power storage device. Our proposed prototype integrates high-usage cycle Lithium Iron Phosphate (LiFePO4) cells with an Arduino microcontroller to enable storage of grid power during off-peak hours and discharge during peak hours. This technology is fundamental to balancing the grid power supply and demand variations and reducing the global dependence on environmentally polluting fossil fuels. Our lab prototype device uses a battery pack with a capacity of about 500 Wh using salvaged LiFePO4 cells in a 4-series by 5-parallel configuration. The pack has a peak instantaneous discharge capability of 1500 Amperes at 12 Volts. This design is modular and flexible, with the possibility of alternative cell arrangements to meet different needs.
Keywords:
Power Grid
Lithium-ion Batteries
Internet of Things
Smart Devices
Energy Storage
Journal
I
IF:
0
Papers:
22
Citations:
0
Organization
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