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Elastic Routing in Ad Hoc Networks with Directional Antennas

Title
Elastic Routing in Ad Hoc Networks with Directional Antennas
Author
전상운
Keywords
Ad hoc network; beam width; directional antenna; elastic routing; hybrid network; multihop routing; throughput scaling law
Issue Date
2017-12
Publisher
IEEE COMPUTER SOC
Citation
IEEE TRANSACTIONS ON MOBILE COMPUTING, v. 16, No. 12, Page. 3334-3346
Abstract
Throughput scaling laws of an ad hoc network equipping directional antennas at each node are analyzed. More specifically, this paper considers a general framework in which the beam width of each node can scale at an arbitrary rate relative to the number of nodes. We introduce an elastic routing protocol, which enables to increase per-hop distance elastically according to the beam width, while maintaining an average signal-to-interference-and-noise ratio at each receiver as a constant. We then identify fundamental operating regimes characterized according to the beam width scaling and analyze throughput scaling laws for each of the regimes. The elastic routing is shown to achieve a much better throughput scaling law than that of the conventional nearest-neighbor multihop for all operating regimes. The gain comes from the fact that more source-destination pairs can be simultaneously activated as the beam width becomes narrower, which eventually leads to a linear throughput scaling law. In addition, our framework is applied to a hybrid network consisting of both wireless ad hoc nodes and infrastructure nodes. As a result, in the hybrid network, we analyze a further improved throughput scaling law and identify the operating regime where the use of directional antennas is beneficial. In addition, we perform numerical evaluation in both ad hoc and hybrid networks, which completely validates our analytical results.
URI
https://ieeexplore.ieee.org/abstract/document/7904719/https://repository.hanyang.ac.kr/handle/20.500.11754/72870
ISSN
1536-1233; 1558-0660
DOI
10.1109/TMC.2017.2695603
Appears in Collections:
COLLEGE OF ENGINEERING SCIENCES[E](공학대학) > MILITARY INFORMATION ENGINEERING(국방정보공학과) > Articles
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