Energy management algorithm for solar-powered energy harvesting wireless sensor node for Internet of Things

  • Shin, Minchul
  • Joe, Inwhee
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48
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60

초록

The solar powered energy harvesting sensor node is a key technology for Internet of Things (IoT), but currently it offers only a small amount of energy storage and is capable of harvesting only a trivial amount of energy. Therefore, new technology for managing the energy associated with this sensor node is required. In particular, it is important to manage the transmission interval because the level of energy consumption during data transmission is the highest in the sensor node. If the proper transmission interval is calculated, the sensor node can be used semi-permanently. In this study, the authors propose an energy prediction algorithm that uses the light intensity of fluorescent lamps in an indoor environment. The proposed algorithm can be used to accurately estimate the amount of energy that will be harvested by a solar panel using a weighted average for light intensity. Then, the optimal transmission interval is calculated using the amount of predicted harvested energy and residual energy. The results from the authors’ experimental testbeds show that their algorithm's performance is better than the existing approaches. The energy prediction error of their algorithm is approximately 0.5%.

키워드

Internet of Thingsenergy harvestingwireless sensor networkstelecommunication power managementsolar cell arraysenergy management algorithmsolar-powered energy harvesting wireless sensor nodeInternet of ThingsIoTenergy storagetransmission interval managementenergy consumption levelenergy prediction algorithmfluorescent lamp light intensitysolar paneloptimal transmission intervalresidual energyenergy prediction errorDigital storageEnergy harvestingEnergy utilizationInternet of thingsSolar energy
제목
Energy management algorithm for solar-powered energy harvesting wireless sensor node for Internet of Things
저자
Shin, MinchulJoe, Inwhee
DOI
10.1049/iet-com.2015.0223
발행일
2016-08
유형
Article
저널명
IET Communications
10
12
페이지
1508 ~ 1521