This paper considers the deployment of a hybrid wireless data/power access point in an 802.11-based wireless powered IoT network. The proportionally fair allocation of throughputs across IoT nodes is considered under the constraints of energy neutrality and CPU capability for each device. The joint optimization of wireless powering and data communication resources takes the CSMA/CA random channel access features, e.g. the backoff procedure, collisions, protocol overhead into account. Numerical results show that the optimized solution can effectively balance individual throughput across nodes, and meanwhile proportionally maximize the overall sum throughput under energy constraints
This paper investigates the joint optimization of time allocation and transmit power in wireless-pow...
We demonstrate that CSMA/CA networks, including IEEE 802.11 networks, exhibit severe fairness proble...
The pervasiveness of wireless technology has indeed created massive opportunity to integrate almost ...
This paper considers the deployment of a hybrid wireless data/power access point in an 802.11-based ...
This paper considers the deployment of a hybrid wireless data/power access point in an 802.11-based ...
This paper considers the deployment of a hybrid wireless data/power access point in an 802.11-based ...
The proliferation of wireless networks based on IEEE 802.11 has resulted in a heterogenous set of de...
Abstract—In this paper we investigate the case of IEEE 802.11-based WLANs and first show that, given...
In wireless powered communication networks (WPCNs), it is essential to research energy efficiency fa...
This paper investigates the joint optimization of time allocation and transmit power in wireless-pow...
We consider a full-duplex wireless powered communication network (WPCN) with one hybrid access point...
peer reviewedTo support the massive connectivity in Internet of Things (IoT), several promising tech...
This paper investigates the joint optimization of time allocation and transmit power in wireless-pow...
This paper investigates the joint optimization of time allocation and transmit power in wireless-pow...
peer reviewedTo support the massive connectivity in Internet of Things (IoT), several promising tech...
This paper investigates the joint optimization of time allocation and transmit power in wireless-pow...
We demonstrate that CSMA/CA networks, including IEEE 802.11 networks, exhibit severe fairness proble...
The pervasiveness of wireless technology has indeed created massive opportunity to integrate almost ...
This paper considers the deployment of a hybrid wireless data/power access point in an 802.11-based ...
This paper considers the deployment of a hybrid wireless data/power access point in an 802.11-based ...
This paper considers the deployment of a hybrid wireless data/power access point in an 802.11-based ...
The proliferation of wireless networks based on IEEE 802.11 has resulted in a heterogenous set of de...
Abstract—In this paper we investigate the case of IEEE 802.11-based WLANs and first show that, given...
In wireless powered communication networks (WPCNs), it is essential to research energy efficiency fa...
This paper investigates the joint optimization of time allocation and transmit power in wireless-pow...
We consider a full-duplex wireless powered communication network (WPCN) with one hybrid access point...
peer reviewedTo support the massive connectivity in Internet of Things (IoT), several promising tech...
This paper investigates the joint optimization of time allocation and transmit power in wireless-pow...
This paper investigates the joint optimization of time allocation and transmit power in wireless-pow...
peer reviewedTo support the massive connectivity in Internet of Things (IoT), several promising tech...
This paper investigates the joint optimization of time allocation and transmit power in wireless-pow...
We demonstrate that CSMA/CA networks, including IEEE 802.11 networks, exhibit severe fairness proble...
The pervasiveness of wireless technology has indeed created massive opportunity to integrate almost ...