A design of smart radio research platform for universal access in a multi-RAT environment

J. Ha, Jin-Up Kim, Youngho Jeong
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引用次数: 2

Abstract

Considering multiple radio access technologies (RATs) environment for the future wireless access networks, effective RAT discovery and selection are important tasks. They enable discovery of various RATs and let the user select appropriate RAT considering users' preferences and other parameters. The wireless network operator may also take advantage of RAT selection in order to distribute loads among two or more RATs. This paper introduces our pilot design of smart radio research platform (SRRP), on which performance of RAT discovery and selection algorithms are tested. Designing SRRP, we stressed on compliance with existing technical standard specifications, e.g. IEEE P1900.4 and 802.21, efficient RAT discovery, and reasonable RAT selection performance. In regard to RAT discovery algorithm we focused on short discovery time in order to reduce battery consumption and minimize possible quality of service (QoS) degradation. Objective of RAT selection is two folded; one is to choose a satisfactory radio connection and the other one is to maintain the connection reliably. Besides RAT discovery and selection algorithms we incorporated spectrum aggregation capability into SRRP to support user's QoS requirement by allocating an extra spectrum block to a base station (BS) where the existing spectrum block is congested.
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多rat环境下通用接入的智能无线电研究平台设计
考虑到未来无线接入网的多种无线接入技术(RAT)环境,有效地发现和选择RAT是一项重要任务。它们可以发现各种RAT,并允许用户根据用户的偏好和其他参数选择合适的RAT。无线网络运营商还可以利用RAT选择,以便在两个或多个RAT之间分配负载。本文介绍了我们的智能无线电研究平台(SRRP)的试点设计,并在该平台上测试了RAT发现和选择算法的性能。在设计SRRP时,我们强调符合现有的技术标准规范,如IEEE P1900.4和802.21,高效的RAT发现和合理的RAT选择性能。对于RAT发现算法,我们专注于短发现时间,以减少电池消耗和最小化可能的服务质量(QoS)退化。鼠体选择的目的是双重的;一个是选择一个满意的无线电连接,另一个是保持可靠的连接。除了RAT发现和选择算法外,我们还将频谱聚合功能纳入SRRP中,通过向现有频谱块拥塞的基站(BS)分配额外的频谱块来支持用户的QoS需求。
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