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Articles

Harvest the Ambient AM Broadcast Radio Energy for Wireless Sensors

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Pages 2054-2065 | Published online: 03 Apr 2012

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Read on this site (2)

M. Russo, P. Šolić & M. Stella. (2013) Probabilistic modeling of harvested GSM energy and its application in extending UHF RFID tags reading range. Journal of Electromagnetic Waves and Applications 27:4, pages 473-484.
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Y. Amin, Q. Chen, L.R. Zheng & H. Tenhunen. (2012) “Green” wideband log-spiral antenna for RFID sensing and wireless applications. Journal of Electromagnetic Waves and Applications 26:14-15, pages 2043-2050.
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Articles from other publishers (12)

Eiichi Shoji. (2023) New Insights into Radio Wave Energy Harvesting across Wide Geographical Ranges Harnessing Medium‐Wave Radio Broadcasting Infrastructure. Energy Technology.
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Kacper Skarżyński & Marcin Słoma. (2023) Printed Electronics in Radiofrequency Energy Harvesters and Wireless Power Transfer Rectennas for IoT Applications. Advanced Electronic Materials 9:8.
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Mustafa Cansiz & Dogay Altinel. (2022) Multiband RF energy harvesting for zero-energy devices. Electrical Engineering 105:1, pages 91-100.
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Jaspreet Singh, Ranjit Kaur & Damanpreet Singh. (2020) Energy harvesting in wireless sensor networks: A taxonomic survey. International Journal of Energy Research 45:1, pages 118-140.
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Akshaj Arora, Sahitya Singh, Manoj Kumar Pandey, Saket Kumar & Sujata Pandey. (2020) Experimental Investigation of a Novel Multi-Patch Fractal Antenna for Radio Frequency Energy Harvesting. Experimental Investigation of a Novel Multi-Patch Fractal Antenna for Radio Frequency Energy Harvesting.
Tianchen Yu & Yizhou Chen. (2019) The Development and Future of Communication and Broadcasting Antennas for Amplitude Modulation Radios. The Development and Future of Communication and Broadcasting Antennas for Amplitude Modulation Radios.
Akshaj Arora, Sahitya Singh, Vandana, Mukul Varshney, Manoj Kumar Pandey & Sujata Pandey. (2019) A Novel Lotus Shaped Multiband Patch Antenna with Improved Performance. A Novel Lotus Shaped Multiband Patch Antenna with Improved Performance.
Shaopeng Wan, Kama Huang & Yilin Liu. (2018) A method to calculate the conversion efficiency of a rectenna. International Journal of RF and Microwave Computer-Aided Engineering 28:9.
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Chinmaya Mahapatra, Zhengguo Sheng, Pouya Kamalinejad, Victor C.M. Leung & Shahriar Mirabbasi. (2017) Optimal Power Control in Green Wireless Sensor Networks With Wireless Energy Harvesting, Wake-Up Radio and Transmission Control. IEEE Access 5, pages 501-518.
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Raquib Md. Ferdous, Ahmed Wasif Reza & Muhammad Faisal Siddiqui. (2016) Renewable energy harvesting for wireless sensors using passive RFID tag technology: A review. Renewable and Sustainable Energy Reviews 58, pages 1114-1128.
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Vladimir Dyo, Tahmina Ajmal, Ben Allen, David Jazani & Ivan Ivanov. (2013) Design of a ferrite rod antenna for harvesting energy from medium wave broadcast signals. The Journal of Engineering 2013:12, pages 89-96.
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Ben Allen, Tahmina Ajmal, Vladimir Dyo & David Jazani. (2012) Harvesting energy from ambient radio signals: A load of hot air?. Harvesting energy from ambient radio signals: A load of hot air?.

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