Self-Adaptive Power Adjustment Routing Based on the Cognitive Radio Ad Hoc Network

There are usually energy holes caused by uneven energy consumption of transferring data in Cognitive Radio Ad Hoc Network (CRANH), which brings about many difficulties in various applications, as limit the network lifetime. To solve this problem, the major idea so far is based on the real-time routi...

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Veröffentlicht in:Applied Mechanics and Materials 2013-10, Vol.443 (Computer-Aided Design, Manufacturing, Modeling and Simulation III), p.535-540
Hauptverfasser: Dong, Yu, Tang, Cheng Pei, Liu, Rui Qi
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container_issue Computer-Aided Design, Manufacturing, Modeling and Simulation III
container_start_page 535
container_title Applied Mechanics and Materials
container_volume 443
creator Dong, Yu
Tang, Cheng Pei
Liu, Rui Qi
description There are usually energy holes caused by uneven energy consumption of transferring data in Cognitive Radio Ad Hoc Network (CRANH), which brings about many difficulties in various applications, as limit the network lifetime. To solve this problem, the major idea so far is based on the real-time routing mechanism. However, the method needs to cost extra energy for be routed again after transferring data, it can decrease network surviving lifetime. Hence, a self-adaptive power adjustment routing mechanism for Cognitive Radio Ad Hoc Network proposed in this paper. The algorithm can be minimum of network energy consumption of transferring data based on self-adaptive power adjustment technique can find different neighbor set to meet different power thresholds. Theoretically and experimentally, it is concluded that the proposed algorithm is able to decrease energy consumption and improve the network lifetime of CRANH.
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subjects Ad hoc networks
Adjustment
Algorithms
Cognitive radio
Computer networks
Energy consumption
Networks
Routing (telecommunications)
title Self-Adaptive Power Adjustment Routing Based on the Cognitive Radio Ad Hoc Network
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