2005Unpublished venueRequires access

Topology control in ad hoc wireless networks with hitch-hiking

Mihaela Cardei, Jie Wu, Shuhui Yang

Open publisher page 24 citations

Abstract

In this paper, we address the topology control with hitch-hiking (TCH) problem. Hitch-hiking [M. Agrawal et al., 2004] is a novel model introduced recently that allows the combination of partial messages to decode a complete message. By the effective use of partial signals, a specific topology can be obtained with less transmission power. The objective of the TCH problem is to obtain a strongly-connected topology with minimum total energy consumption. We prove the TCH problem to be NP-complete and design a distributed and localized algorithm (DTCH) that can be applied on top of any symmetric, strongly-connected topology to reduce total power consumption. We analyze the performance of our approach through simulation.

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What this paper is about

In this paper, we address the topology control with hitch-hiking (TCH) problem. Hitch-hiking [M. Agrawal et al., 2004] is a novel model introduced recently that allows the combination of partial messages to decode a complete message. By the effective use of partial signals, a specific topology can be obtained with less transmission power. The objective of the TCH problem is to obtain a strongly-connected topology with minimum total energy consumption. We prove the TCH problem to be NP-complete and design a distributed and localized algorithm (DTCH) that can be applied on top of any symmetric, strongly-connected topology to reduce total power consumption. We analyze the performance of our approach through simulation.

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OpenAlex reports 24 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

In this paper, we address the topology control with hitch-hiking (TCH) problem. Hitch-hiking [M. Agrawal et al., 2004] is a novel model introduced recently that allows the combination of partial messages to decode a complete message. By the effective use of partial signals, a specific topology can be obtained with less transmission power. The objective of the TCH problem is to obtain a strongly-connected topology with minimum total energy consumption. We prove the TCH problem to be NP-complete and design a distributed and localized algorithm (DTCH) that can be applied on top of any symmetric, strongly-connected topology to reduce total power consumption. We analyze the performance of our approach through simulation.

Key concepts: Topology control, Topology (electrical circuits), Computer science, Wireless ad hoc network, Network topology, Power control, Power (physics), Power consumption

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