2007Unpublished venueRequires access

An Autonomous Adaptive Base Station that Supports Multiple Wireless Network Systems

Kazunori Akabane, Hiroyuki Shiba, Munehiro Matsui, Kazuhiro Uehara

Open publisher page 3 citations

Abstract

Various wireless systems are being developed to meet users' needs, and effective frequency use is urgently needed because of the rapid increase in frequency demand that accompanies the increasing popularity of wireless services. However, general base stations are making no effort to use frequency effectively, and cooperation among wireless system base stations is necessary for more effective frequency use. Base stations can cooperate more efficiently if they are able to use multiple channels of many wireless systems simultaneously. In this paper, we propose an autonomous adaptive base station (AABS) that adapts to various wireless systems the way software defined radio (SDR) base stations do. The AABS can autonomously select and use the most suitable wireless system based on user traffic and AABS's hardware resources. AABS can also offer a communication environment suitable for "multi-link communication", because AABS can use multiple channels of multiple wireless systems simultaneously. We developed an AABS prototype so we could evaluate performance. Our experimental and computer simulation results demonstrate that the prototype performs effectively.

About this research paper

What this paper is about

Various wireless systems are being developed to meet users' needs, and effective frequency use is urgently needed because of the rapid increase in frequency demand that accompanies the increasing popularity of wireless services. However, general base stations are making no effort to use frequency effectively, and cooperation among wireless system base stations is necessary for more effective frequency use. Base stations can cooperate more efficiently if they are able to use multiple channels of many wireless systems simultaneously. In this paper, we propose an autonomous adaptive base station (AABS) that adapts to various wireless systems the way software defined radio (SDR) base stations do. The AABS can autonomously select and use the most suitable wireless system based on user traffic and AABS's hardware resources. AABS can also offer a communication environment suitable for "multi-link communication", because AABS can use multiple channels of multiple wireless systems simultaneously. We developed an AABS prototype so we could evaluate performance. Our experimental and computer simulation results demonstrate that the prototype performs effectively.

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OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Various wireless systems are being developed to meet users' needs, and effective frequency use is urgently needed because of the rapid increase in frequency demand that accompanies the increasing popularity of wireless services. However, general base stations are making no effort to use frequency effectively, and cooperation among wireless system base stations is necessary for more effective frequency use. Base stations can cooperate more efficiently if they are able to use multiple channels of many wireless systems simultaneously. In this paper, we propose an autonomous adaptive base station (AABS) that adapts to various wireless systems the way software defined radio (SDR) base stations do. The AABS can autonomously select and use the most suitable wireless system based on user traffic and AABS's hardware resources. AABS can also offer a communication environment suitable for "multi-link communication", because AABS can use multiple channels of multiple wireless systems simultaneously. We developed an AABS prototype so we could evaluate performance. Our experimental and computer simulation results demonstrate that the prototype performs effectively.

Key concepts: Base station, Base transceiver station, Computer science, Wireless, Wireless network, Computer network, Wi-Fi array, Fixed wireless

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