Department of Electrical and Electronic Engineering, Canadian University of Bangladesh (CUB) Dhaka 1212, Bangladesh.
International Journal of Science and Research Archive, 2026, 19(02), 258-265
Article DOI: 10.30574/ijsra.2026.19.2.0962
Received on 23 March 2026; revised on 04 May 2026; accepted on 06 May 2026
We suggest in this work that batteries can be eliminated by utilizing Wi-Fi communication with surrounding devices including various access points and smartphones to provide power wirelessly to different wearable devices. This would eliminate the need for carrying batteries. A temperature sensor which is wearable that gains energy communication and sends data is something that we are working on developing. We can make this application possible by developing an effective Wi Fi harvesting front-end operating at 2.4 GHz. This front end is used to power an ANT radio platform, and the Wi-Fi source is a smartphone. By studying and analyzing the impact that modulation (OFDM), 72 MHz wide bandwidth, and the bursty feature of 802.11 Wi-Fi signals have on the efficiency, sensitivity, and transmitted power of the RF harvester, we learn how these factors affect the harvester. With a storage capacitor node leakage of 2.5 µW, our prototype can reach a sensitivity of-16.5 dBm. This is achieved through 100% duty cycle Wi-Fi broadcasts without any interference. This translates to a working range of approximately 11.5 centimeters that operates at 2 decibels, and 92 centimeters from a different Wi-Fi access point that operates at 20 decibels and has a 3-decibel antenna on the wearable device.
Rf Energy Harvesting System; Battery-Free; Wearable Radio Platform
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Abdullah Al Niloy, Md. Akhtaruzzaman, Romjan Molla, Md Sabbir Hossain, Mohammed Ramzan Ali and Md Sohel Mia. Utilizing Wi-Fi radio frequency energy to power battery-less wearable radios. International Journal of Science and Research Archive, 2026, 19(02), 258-265. Article DOI: https://doi.org/10.30574/ijsra.2026.19.2.0962.






