Gotowa bibliografia na temat „Simultaneous Lightwave Information and Power Transfer (SLIPT)”
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Artykuły w czasopismach na temat "Simultaneous Lightwave Information and Power Transfer (SLIPT)"
Diamantoulakis, Panagiotis D., George K. Karagiannidis i Zhiguo Ding. "Simultaneous Lightwave Information and Power Transfer (SLIPT)". IEEE Transactions on Green Communications and Networking 2, nr 3 (wrzesień 2018): 764–73. http://dx.doi.org/10.1109/tgcn.2018.2818325.
Pełny tekst źródłaFilho, José Ilton De Oliveira, Omar Alkhazragi, Abderrahmen Trichili, Boon S. Ooi, Mohamed-Slim Alouini i Khaled Nabil Salama. "Simultaneous Lightwave and Power Transfer for Internet of Things Devices". Energies 15, nr 8 (12.04.2022): 2814. http://dx.doi.org/10.3390/en15082814.
Pełny tekst źródłaDe Marcellis, Andrea, Guido Di Patrizio Stanchieri, Marco Faccio, Elia Palange i Timothy G. Constandinou. "A 6 Mbps 7 pJ/bit CMOS Integrated Wireless Simultaneous Lightwave Information and Power Transfer System for Biomedical Implants". Electronics 13, nr 9 (4.05.2024): 1774. http://dx.doi.org/10.3390/electronics13091774.
Pełny tekst źródłaShin, Huicheol, Sangki Jeong, Seungjae Baek i Yujae Song. "Adaptive Control for Underwater Simultaneous Lightwave Information and Power Transfer: A Hierarchical Deep-Reinforcement Approach". Journal of Marine Science and Engineering 12, nr 9 (14.09.2024): 1647. http://dx.doi.org/10.3390/jmse12091647.
Pełny tekst źródłaChen, Danyang, Qingxuan Wang, Jianping Wang, Zhao Li, Shuai Wu, Rui Hao, Kai Fan, Huimin Lu i Jianli Jin. "Energy Efficiency Optimization for SLIPT-Enabled NOMA System". Photonics 10, nr 7 (9.07.2023): 791. http://dx.doi.org/10.3390/photonics10070791.
Pełny tekst źródłaIbrahim, Abdulgani A., Serdar Özgür Ata i Lütfiye Durak-Ata. "On the Performance of Energy Harvesting Dual-Hop Free-Space Optical Communication Systems with Secrecy Analysis". Sensors 25, nr 2 (8.01.2025): 319. https://doi.org/10.3390/s25020319.
Pełny tekst źródłaDing, Jupeng, Chih-Lin I, Jintao Wang i Jian Song. "Performance Evaluation of Non-Lambertian SLIPT for 6G Visible Light Communication Systems". Photonics 11, nr 9 (10.09.2024): 856. http://dx.doi.org/10.3390/photonics11090856.
Pełny tekst źródłaMa, Shuai, Fan Zhang, Hang Li, Fuhui Zhou, Yuhao Wang i Shiyin Li. "Simultaneous Lightwave Information and Power Transfer in Visible Light Communication Systems". IEEE Transactions on Wireless Communications 18, nr 12 (grudzień 2019): 5818–30. http://dx.doi.org/10.1109/twc.2019.2939242.
Pełny tekst źródłaPan, Gaofeng, Panagiotis D. Diamantoulakis, Zheng Ma, Zhiguo Ding i George K. Karagiannidis. "Simultaneous Lightwave Information and Power Transfer: Policies, Techniques, and Future Directions". IEEE Access 7 (2019): 28250–57. http://dx.doi.org/10.1109/access.2019.2901855.
Pełny tekst źródłaYe, Kuan, Cong Zou i Fang Yang. "Dual-Hop Underwater Optical Wireless Communication System With Simultaneous Lightwave Information and Power Transfer". IEEE Photonics Journal 13, nr 6 (grudzień 2021): 1–7. http://dx.doi.org/10.1109/jphot.2021.3118047.
Pełny tekst źródłaRozprawy doktorskie na temat "Simultaneous Lightwave Information and Power Transfer (SLIPT)"
Ribeiro, Dos Santos Daniel. "Printable photovoltaic photoreceptors for the factory of the future and the Internet of Things : Toward energy harvesting and wireless optical communications". Electronic Thesis or Diss., Limoges, 2025. http://www.theses.fr/2025LIMO0018.
Pełny tekst źródłaVisible Light Communication (VLC) and Organic Photovoltaics (OPVs) cells offer promising solutions for the increasing energy and communication demands of the Internet of Things (IoT). VLC uses the visible light spectrum for secure and efficient data transmission, while OPVs provide flexible, low-cost, and sustainable energy harvesting, particularly under indoor lighting conditions. Together, they form the basis of Simultaneous Lightwave Information and Power Transfer (SLIPT), enabling devices to harvest energy and communicate through light. Despite their potential, integrating OPVs into SLIPT systems presents challenges such as managing the trade-offs between energy harvesting and communication, handling nonlinear behaviors, and optimizing performance under real-world indoor conditions. This thesis explores these challenges by investigating the performance of OPVs in SLIPT systems. Static and dynamic characterizations revealed their effectiveness in energy harvesting and communication, even under low-light and curved configurations. Systematic studies examined the impact of illumination levels, device curvature, and front-end circuitry on OPV performance, demonstrating their robustness and adaptability. Advanced simulations were also developed and validated experimentally, offering insights into OPV behavior in indoor scenarios, including mobility and diffuse light conditions. An experimental bench was developed to analyze SLIPT trade-offs, comparing an active front-end, which offered predictable performance but required external power, with a passive alternative that was more energy-efficient but exhibited less consistent behavior. By combining experimental and simulation approaches, this work advances the understanding of OPV-based SLIPT systems and addresses critical gaps in the field. It establishes a foundation for integrating OPVs into autonomous IoT networks, opening new pathways for sustainable, self-powered, and efficient technologies tailored to meet the demands IoT needs
De, Oliveira Filho José Ilton. "Simultaneous Lightwave Information and Power Transfer (SLIPT)". Thesis, 2019. http://hdl.handle.net/10754/656097.
Pełny tekst źródłaCzęści książek na temat "Simultaneous Lightwave Information and Power Transfer (SLIPT)"
Tushar, Nandita Pradhan i Pooja Jaiswal. "Wireless Power Transfer Techniques for 6G Communication". W Advances in Wireless Technologies and Telecommunication, 1–54. IGI Global, 2025. https://doi.org/10.4018/979-8-3693-8799-3.ch001.
Pełny tekst źródłaStreszczenia konferencji na temat "Simultaneous Lightwave Information and Power Transfer (SLIPT)"
Diamantoulakis, Panagiotis D., i George K. Karagiannidis. "Simultaneous Lightwave Information and Power Transfer (SLIPT) for Indoor IoT Applications". W GLOBECOM 2017 - 2017 IEEE Global Communications Conference. IEEE, 2017. http://dx.doi.org/10.1109/glocom.2017.8254781.
Pełny tekst źródłaDiamantoulakis, Panagiotis D., Koralia N. Pappi, Zheng Ma, Xianfu Lei, Paschalis C. Sofotasios i George K. Karagiannidis. "Airborne Radio Access Networks with Simultaneous Lightwave Information and Power Transfer (SLIPT)". W GLOBECOM 2018 - 2018 IEEE Global Communications Conference. IEEE, 2018. http://dx.doi.org/10.1109/glocom.2018.8648007.
Pełny tekst źródłaGhasvarianjahromi, Sara, Mehdi Karbalayghareh, Panagiotis D. Diamantoulakis, George K. Karagiannidis i Murat Uysal. "Simultaneous Lightwave Information and Power Transfer in Underwater Visible Light Communications". W 2019 IEEE 30th Annual International Symposium on Personal, Indoor and Mobile Radio Communications (PIMRC). IEEE, 2019. http://dx.doi.org/10.1109/pimrc.2019.8904146.
Pełny tekst źródłaTennakoon, Priyashantha, Dushantha Nalin K. Jayakody i Sofiene Affes. "Simultaneous Lightwave Information and Power Transfer with Non-orthogonal Multiple Access". W 2021 10th International Conference on Information and Automation for Sustainability (ICIAfS). IEEE, 2021. http://dx.doi.org/10.1109/iciafs52090.2021.9605894.
Pełny tekst źródłaQiao, Hao, Chen Gong, Weijie Liu i Zhengyuan Xu. "Simultaneous Lightwave Information and Power Transfer via Scattering and Line-of-Sight Links". W 2020 IEEE International Conference on Communications Workshops (ICC Workshops). IEEE, 2020. http://dx.doi.org/10.1109/iccworkshops49005.2020.9145408.
Pełny tekst źródłaC, Jenila, Marri Sravan Kumar, Tellabati Abhinav, Sykam Manoj, Vadla Mallikarjuna Chari i Pamidi Mahaboob Basha. "Simultaneous Lightwave Information and Power Transfer-based Design of Green IoT Communication System". W 2023 International Conference on Intelligent Technologies for Sustainable Electric and Communications Systems (iTech SECOM). IEEE, 2023. http://dx.doi.org/10.1109/itechsecom59882.2023.10435193.
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