2010Unpublished venueRequires access

Topology Control Using Multi-Dimensional Context Parameters for Mobile P2P Networks

Hiroyuki Kubo, Ryoichi Shinkuma, Tatsuro Takahashi

Open publisher page 6 citations

Abstract

Enhancements of transmission speed and mobile node capability in wireless access networks enable people to watch movies and share large files with friends via their personal mobile devices. Considering the increased demand for such services in the next five to ten years, we will need to introduce P2P architectures to mobile networks to handle the large number of requests from mobile nodes. However, in mobile P2P networks, since negative effects caused by instable links and high leave rates are propagated to down-stream nodes, it is difficult to ensure service quality and long service lifetime. To solve this problem, we describe a novel node-allocation framework using multi-dimensional context parameters of mobile nodes, which includes available bandwidth, disconnection rate, and remaining battery capacity. Taking into account the significance of each parameter, our framework integrates the context parameters into a single parameter called Relay Ability. Each node is allocated to the P2P topology in accordance with its relay ability. To test our method, we applied our architecture to overlay multicast and several of results from comparative evaluations through computer simulation.

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What this paper is about

Enhancements of transmission speed and mobile node capability in wireless access networks enable people to watch movies and share large files with friends via their personal mobile devices. Considering the increased demand for such services in the next five to ten years, we will need to introduce P2P architectures to mobile networks to handle the large number of requests from mobile nodes. However, in mobile P2P networks, since negative effects caused by instable links and high leave rates are propagated to down-stream nodes, it is difficult to ensure service quality and long service lifetime. To solve this problem, we describe a novel node-allocation framework using multi-dimensional context parameters of mobile nodes, which includes available bandwidth, disconnection rate, and remaining battery capacity. Taking into account the significance of each parameter, our framework integrates the context parameters into a single parameter called Relay Ability. Each node is allocated to the P2P topology in accordance with its relay ability. To test our method, we applied our architecture to overlay multicast and several of results from comparative evaluations through computer simulation.

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OpenAlex reports 6 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Enhancements of transmission speed and mobile node capability in wireless access networks enable people to watch movies and share large files with friends via their personal mobile devices. Considering the increased demand for such services in the next five to ten years, we will need to introduce P2P architectures to mobile networks to handle the large number of requests from mobile nodes. However, in mobile P2P networks, since negative effects caused by instable links and high leave rates are propagated to down-stream nodes, it is difficult to ensure service quality and long service lifetime. To solve this problem, we describe a novel node-allocation framework using multi-dimensional context parameters of mobile nodes, which includes available bandwidth, disconnection rate, and remaining battery capacity. Taking into account the significance of each parameter, our framework integrates the context parameters into a single parameter called Relay Ability. Each node is allocated to the P2P topology in accordance with its relay ability. To test our method, we applied our architecture to overlay multicast and several of results from comparative evaluations through computer simulation.

Key concepts: Computer science, Computer network, Relay, Node (physics), Multicast, Mobile computing, Mobile device, Context (archaeology)

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