Maritime Networking: Bringing Internet to the Sea
Морские сети: обеспечение доступа к Интернету в море
2019-01-01
SCID: 54.1/26waw53b
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bandwidth constraintsdynamic network topologylink stabilitymaritime networkswireless multi-hop networks
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Abstract (AI)
Maritime networks establish wireless multi-hop networks to provide wireless broadband service at sea, connecting various kinds of ships, maritime buoys, and beacons. The maritime networks possess two distinguishing characteristics highly affected by maneuver at sea-dynamic link quality and bandwidth constrained, and dynamic network topology-that warrant specific attention. Unlike land vehicles, maneuver at sea is affected by sea surface movement and wave occlusions, which can cause unstable environment with a high rate of link breakages caused by low link stability, as well as low and highly variable bandwidth. In spite of the need to achieve performance close to high-speed terrestrial wireless broadband service on land, there is only a perfunctory effort to investigate maritime networks. There is an urgent need to refresh the interest to investigate, as well as to further enhance, maritime networks. This paper presents a review of the limited research works of this topic, which revolve around the networking issues in the link, network, and upper layers, in the literature. The objective is to establish a foundation in order to motivate a new research interest in maritime networks. Open issues are also presented to foster new research initiatives in this burgeoning and exciting area.
Key Findings
1
Existing maritime-network research is limited and addresses challenges across link, network, and upper layers only perfunctorily.
2
Maritime network topology changes dynamically because of vessel maneuver, requiring specialized networking approaches distinct from terrestrial vehicular networks.
3
Maritime networks provide wireless multi-hop broadband connectivity among ships, maritime buoys, and beacons at sea.
4
Sea-surface movement and wave occlusions produce dynamic link quality, frequent link breakages, and low, highly variable bandwidth.
5
The paper reviews prior work and identifies open issues to establish a foundation for renewed research and improved maritime broadband performance.
Research Object
maritime wireless multi-hop networks connecting ships, maritime buoys, and beacons
Research Subject
networking issues caused by dynamic link quality, bandwidth constraints, and dynamic topology across the link, network, and upper layers
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2019-01-01
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