Far-field microwave power transfer (MPT) will free wireless sensors and other mobile devices from the constraints imposed by finite battery capacities. Integrating MPT with wireless communications to support simultaneous wireless information and power transfer (SWIPT) allows the same spectrum to be used for dual purposes without compromising the quality of service. A novel approach is presented in this paper for realizing SWIPT in a broadband system where orthogonal frequency division multiplexing and transmit beamforming are deployed to create a set of parallel sub-channels for SWIPT, which simplifies resource allocation. Based on a proposed reconfigurable mobile architecture, different system configurations are considered by combining sin...
The deployment of internet of things (IOT) devices in several applications is limited by their need ...
The recent trends in the domain of wireless communications indicate severe upcoming challenges, both...
This paper presents a comprehensive study related to simultaneous wireless information and power tra...
Far-field microwave power transfer (MPT) will free wireless sensors and other mobile devices from th...
Far-field microwave power transfer (MPT) will free wireless sensors and other mobile devices from th...
Far-field wireless recharging based on microwave power transfer (MPT) will free mobile devices from ...
Abstract—Far-field wireless recharging based on microwave power transfer (MPT) will free mobile devi...
2012-2013 > Academic research: refereed > Refereed conference paperAccepted ManuscriptPublishe
Abstract—Powering mobiles using microwave power transfer (PT) avoids the inconvenience of battery re...
none5noThis paper provides examples of recent solutions for Simultaneous Wireless Information and Po...
In this paper, we have study the optimal design for synchronous wireless information and power trans...
Abstract Most existing algorithms of simultaneous wireless information and power transfer (SWIPT) fo...
Simultaneous Wireless Information and Power Transfer (SWIPT) is a wireless energy harvesting techniq...
The deployment of internet of things (IOT) devices in several applications is limited by their need ...
This work was funded, in part, by the Russian Federation State Project "Science", Grant No. 8.13264....
The deployment of internet of things (IOT) devices in several applications is limited by their need ...
The recent trends in the domain of wireless communications indicate severe upcoming challenges, both...
This paper presents a comprehensive study related to simultaneous wireless information and power tra...
Far-field microwave power transfer (MPT) will free wireless sensors and other mobile devices from th...
Far-field microwave power transfer (MPT) will free wireless sensors and other mobile devices from th...
Far-field wireless recharging based on microwave power transfer (MPT) will free mobile devices from ...
Abstract—Far-field wireless recharging based on microwave power transfer (MPT) will free mobile devi...
2012-2013 > Academic research: refereed > Refereed conference paperAccepted ManuscriptPublishe
Abstract—Powering mobiles using microwave power transfer (PT) avoids the inconvenience of battery re...
none5noThis paper provides examples of recent solutions for Simultaneous Wireless Information and Po...
In this paper, we have study the optimal design for synchronous wireless information and power trans...
Abstract Most existing algorithms of simultaneous wireless information and power transfer (SWIPT) fo...
Simultaneous Wireless Information and Power Transfer (SWIPT) is a wireless energy harvesting techniq...
The deployment of internet of things (IOT) devices in several applications is limited by their need ...
This work was funded, in part, by the Russian Federation State Project "Science", Grant No. 8.13264....
The deployment of internet of things (IOT) devices in several applications is limited by their need ...
The recent trends in the domain of wireless communications indicate severe upcoming challenges, both...
This paper presents a comprehensive study related to simultaneous wireless information and power tra...