© 1967-2012 IEEE. Future Internet of Things (IoTs) networks will have Radio Frequency (RF)-energy harvesting devices powered by a Power Beacon (PB). These devices will be tasked with collection and transmission of data over multiple hops to a fusion center. In this paper, our aim is to maximize the minimum data gathering rate of devices acting as sources. We formulate a Mixed Integer Linear Program (MILP) to compute the optimal max-min rate of sources by deciding for each slot the devices to be charged, a PB\u27s transmission power, the amount of data routed over each link, and the active time of transmitting links. We also present a novel distributed protocol called Distributed Charging and Fairness Gathering (D-CFG) that is used by IoT de...
This paper studies a novel wireless powered Internet of Things (IoT) network that consists of (a) a ...
With the advent of the Internet of Things era, "things-things interconnection" has become a new conc...
In this letter, we present the first attempt to solve an energy efficiency (EE) based max-min fairne...
This paper considers a novel Internet of Things (IoT) network comprising of sensor devices and Power...
Many applications operating in the Internet of Things (IoT) require timely and fair data collection ...
This letter considers the problem of embedding the maximum number of Virtual Network Requests (VNRs)...
Abstract Wireless energy transfer (WET) is emerging as an enabling green technology for Internet of...
It is expected that the number of wireless devices will grow rapidly over the next few years due to ...
© 2019 IEEE. In this paper, we propose a novel approach to jointly address energy management and net...
The Internet of Things (IoT) comprises an increasing number of low-power and low-cost devices that a...
Abstract—Wireless charging through directed radio frequency (RF) waves is an emerging technology tha...
The rapid growth of the so-called Internet of Things is expected to significantly expand and support...
This letter considers radio frequency (RF) energy harvesting and targets monitoring sensor nodes tha...
The requirements of low latency, low cost, less energy consumption, high flexibility, high network c...
2014 IEEE. Backscatter communication can potentially find wide Internet of Things (IoT) applications...
This paper studies a novel wireless powered Internet of Things (IoT) network that consists of (a) a ...
With the advent of the Internet of Things era, "things-things interconnection" has become a new conc...
In this letter, we present the first attempt to solve an energy efficiency (EE) based max-min fairne...
This paper considers a novel Internet of Things (IoT) network comprising of sensor devices and Power...
Many applications operating in the Internet of Things (IoT) require timely and fair data collection ...
This letter considers the problem of embedding the maximum number of Virtual Network Requests (VNRs)...
Abstract Wireless energy transfer (WET) is emerging as an enabling green technology for Internet of...
It is expected that the number of wireless devices will grow rapidly over the next few years due to ...
© 2019 IEEE. In this paper, we propose a novel approach to jointly address energy management and net...
The Internet of Things (IoT) comprises an increasing number of low-power and low-cost devices that a...
Abstract—Wireless charging through directed radio frequency (RF) waves is an emerging technology tha...
The rapid growth of the so-called Internet of Things is expected to significantly expand and support...
This letter considers radio frequency (RF) energy harvesting and targets monitoring sensor nodes tha...
The requirements of low latency, low cost, less energy consumption, high flexibility, high network c...
2014 IEEE. Backscatter communication can potentially find wide Internet of Things (IoT) applications...
This paper studies a novel wireless powered Internet of Things (IoT) network that consists of (a) a ...
With the advent of the Internet of Things era, "things-things interconnection" has become a new conc...
In this letter, we present the first attempt to solve an energy efficiency (EE) based max-min fairne...