Content centric networking (CCN) is a newly proposed futuristic Internet paradigm in which communication depends on the decoupling of content names from their locations. In CCN-based multihop wireless ad hoc networks, the participating nodes show dynamic topology, intermittent connectivity, channels fluctuation, and severe constraints such as limited battery power. In the case of traffic congestion, the affected nodes die early owing to the shortage of battery power. Consequently, all pending request entries are also destroyed, which further degrades the network performance as well as the node working lifetime. In this study, we have proposed a novel energy aware transmission scheme in which the forwarding mechanism is based on a node's residual energy. The proposed scheme is evaluated using official ndnSIM. This scheme enhances performance in terms of content retrieval time and total Interest transmission in the network.
Rana Asif REHMAN
Hongik University
Byung-Seo KIM
Hongik University
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Rana Asif REHMAN, Byung-Seo KIM, "Energy Aware Forwarding in Content Centric Based Multihop Wireless Ad Hoc Networks" in IEICE TRANSACTIONS on Fundamentals,
vol. E98-A, no. 12, pp. 2738-2742, December 2015, doi: 10.1587/transfun.E98.A.2738.
Abstract: Content centric networking (CCN) is a newly proposed futuristic Internet paradigm in which communication depends on the decoupling of content names from their locations. In CCN-based multihop wireless ad hoc networks, the participating nodes show dynamic topology, intermittent connectivity, channels fluctuation, and severe constraints such as limited battery power. In the case of traffic congestion, the affected nodes die early owing to the shortage of battery power. Consequently, all pending request entries are also destroyed, which further degrades the network performance as well as the node working lifetime. In this study, we have proposed a novel energy aware transmission scheme in which the forwarding mechanism is based on a node's residual energy. The proposed scheme is evaluated using official ndnSIM. This scheme enhances performance in terms of content retrieval time and total Interest transmission in the network.
URL: https://global.ieice.org/en_transactions/fundamentals/10.1587/transfun.E98.A.2738/_p
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@ARTICLE{e98-a_12_2738,
author={Rana Asif REHMAN, Byung-Seo KIM, },
journal={IEICE TRANSACTIONS on Fundamentals},
title={Energy Aware Forwarding in Content Centric Based Multihop Wireless Ad Hoc Networks},
year={2015},
volume={E98-A},
number={12},
pages={2738-2742},
abstract={Content centric networking (CCN) is a newly proposed futuristic Internet paradigm in which communication depends on the decoupling of content names from their locations. In CCN-based multihop wireless ad hoc networks, the participating nodes show dynamic topology, intermittent connectivity, channels fluctuation, and severe constraints such as limited battery power. In the case of traffic congestion, the affected nodes die early owing to the shortage of battery power. Consequently, all pending request entries are also destroyed, which further degrades the network performance as well as the node working lifetime. In this study, we have proposed a novel energy aware transmission scheme in which the forwarding mechanism is based on a node's residual energy. The proposed scheme is evaluated using official ndnSIM. This scheme enhances performance in terms of content retrieval time and total Interest transmission in the network.},
keywords={},
doi={10.1587/transfun.E98.A.2738},
ISSN={1745-1337},
month={December},}
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TY - JOUR
TI - Energy Aware Forwarding in Content Centric Based Multihop Wireless Ad Hoc Networks
T2 - IEICE TRANSACTIONS on Fundamentals
SP - 2738
EP - 2742
AU - Rana Asif REHMAN
AU - Byung-Seo KIM
PY - 2015
DO - 10.1587/transfun.E98.A.2738
JO - IEICE TRANSACTIONS on Fundamentals
SN - 1745-1337
VL - E98-A
IS - 12
JA - IEICE TRANSACTIONS on Fundamentals
Y1 - December 2015
AB - Content centric networking (CCN) is a newly proposed futuristic Internet paradigm in which communication depends on the decoupling of content names from their locations. In CCN-based multihop wireless ad hoc networks, the participating nodes show dynamic topology, intermittent connectivity, channels fluctuation, and severe constraints such as limited battery power. In the case of traffic congestion, the affected nodes die early owing to the shortage of battery power. Consequently, all pending request entries are also destroyed, which further degrades the network performance as well as the node working lifetime. In this study, we have proposed a novel energy aware transmission scheme in which the forwarding mechanism is based on a node's residual energy. The proposed scheme is evaluated using official ndnSIM. This scheme enhances performance in terms of content retrieval time and total Interest transmission in the network.
ER -