ABSTRACT In this paper, we devise and evaluate a new Grid-Based Priority Routing (GBPR) protocol for Underwater Wireless Sensor Networks (UWSNs). GBPR utilizes a 3D logical grid view of the monitored area to deliver data packets to sink nodes. Particularly, data packets are forwarded on a cell-by-cell-basis using elected sensor nodes called cell-heads. The unique feature in GBPR is the classification of the neighboring cells in different priority levels according to their distances to the sink node. Cells closer to the sink are given higher priority to be selected as the next hop. This mechanism helps in reducing the number of hops; thus, reducing the energy consumption and end-to-end delay, and increasing the reliability. The protocol is ...
The unique characteristics of underwater environment such as long propagation delay, limited bandwid...
Underwater wireless sensor networks (UWSNs) are the enabling technology for a new era of underwater ...
Underwater Wireless Sensor Networks (UWSNs) have drawn tremendous attentions from all fields because...
ABSTRACT In this paper, we devise and evaluate a new Grid-Based Priority Routing (GBPR) protocol fo...
A little change in the environment that goes unnoticed in an underwater communication network might ...
AbstractDevolving an efficient routing protocol in Underwater Wireless Sensor Networks (UWSNs) is a ...
Underwater wireless sensor networks (UWSNs) are featured by long propagation delay, limited energy, ...
The underwater wireless sensor network (UWSN) is considered a promising technology for collecting va...
The paper presents a novel framework based on prioritized event detection for Underwater Wireless Se...
Recently, Underwater Wireless Sensor Networks (UWSNs) has witnessed significant attention from both ...
ABSTRACT The protocols proposed for Underwater Wireless Sensor Networks have addressed various issue...
To select the next node on the route, several comparison matrices are used: the number of hops, dist...
Energy optimized Path Unaware Layered Routing Protocol (E-PULRP) for dense 3D Underwater Sensor Netw...
Energy optimized Path Unaware Layered Routing Protocol (E-PULRP) for dense 3D Underwater Sensor Netw...
Recently, the Underwater Wireless Sensor Network (UWSN) is the major research area for researchers d...
The unique characteristics of underwater environment such as long propagation delay, limited bandwid...
Underwater wireless sensor networks (UWSNs) are the enabling technology for a new era of underwater ...
Underwater Wireless Sensor Networks (UWSNs) have drawn tremendous attentions from all fields because...
ABSTRACT In this paper, we devise and evaluate a new Grid-Based Priority Routing (GBPR) protocol fo...
A little change in the environment that goes unnoticed in an underwater communication network might ...
AbstractDevolving an efficient routing protocol in Underwater Wireless Sensor Networks (UWSNs) is a ...
Underwater wireless sensor networks (UWSNs) are featured by long propagation delay, limited energy, ...
The underwater wireless sensor network (UWSN) is considered a promising technology for collecting va...
The paper presents a novel framework based on prioritized event detection for Underwater Wireless Se...
Recently, Underwater Wireless Sensor Networks (UWSNs) has witnessed significant attention from both ...
ABSTRACT The protocols proposed for Underwater Wireless Sensor Networks have addressed various issue...
To select the next node on the route, several comparison matrices are used: the number of hops, dist...
Energy optimized Path Unaware Layered Routing Protocol (E-PULRP) for dense 3D Underwater Sensor Netw...
Energy optimized Path Unaware Layered Routing Protocol (E-PULRP) for dense 3D Underwater Sensor Netw...
Recently, the Underwater Wireless Sensor Network (UWSN) is the major research area for researchers d...
The unique characteristics of underwater environment such as long propagation delay, limited bandwid...
Underwater wireless sensor networks (UWSNs) are the enabling technology for a new era of underwater ...
Underwater Wireless Sensor Networks (UWSNs) have drawn tremendous attentions from all fields because...