未来多跳移动无线网络中半双工和全双工FDD的并行操作

A. Otyakmaz, R. Schoenen, S. Dreier, B. Walke
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引用次数: 31

摘要

目前和未来的移动无线网络有两种基本的双工方案:频分双工(FDD)和时分双工(TDD)。一般来说,每种方法都有其优点和缺点。然而,这两种方案都有它们表现最佳的场景。在未来的移动无线电系统中,典型的无线数据通信将不仅出现在机场、城市中心、展览馆等热点等城域场景中,还将出现在广域环境中,例如农村环境中的移动汽车。一般来说,TDD更适合于密集的大都市区场景,而FDD则更适合于广域环境。如果一个FDD终端同时发送和接收,它将需要一个昂贵的双工滤波器,以分离UL和DL信道。半双工终端不需要这样的滤波器。因此,半双工FDD在成本方面似乎很有吸引力。继电器是下一代系统的一个很有前途的概念。它可以扩大小区的覆盖范围,并增加小区的总容量。中继不是通过电线连接,而是以解码转发的原理工作,因此是基站的一种经济有效的替代方案。本文介绍了一种在具有中继能力的系统中支持半双工和全双工FDD终端并行操作的协议。
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Parallel operation of half- and full-duplex FDD in future multi-hop mobile radio networks
There are two basic duplexing schemes for present and future mobile radio networks, frequency-division duplex (FDD) and time-division duplex (TDD). In general each of these methods has its benefits and drawbacks. However, both schemes have their scenarios where they perform best. In future mobile radio systems typical wireless data communication will not only occur in metropolitan area scenarios like hotspots in airports, city centres, exhibition halls, etc., but also in wide area environments, e.g. a moving car in a rural environment. In general TDD is more appropriate for dense metropolitan area scenarios whereas FDD has benefits in wide area environments. If an FDD terminal which transmitted and received simultaneously, it would need an expensive duplex-filter, in order to separate UL and DL channels. Half-duplex terminals do not need such a filter. Therefore, half-duplex FDD appears to be attractive in terms of cost. A Relay is a promising concept for next generation systems. It allows enlarging the cell coverage range and is increasing the total cell capacity. A relay is not connected by wire, but works in a decode-and-forward principle and consequently is a cost-efficient alternative to base stations. This paper introduces a protocol to support parallel operation of half- and full-duplex FDD terminals in a relay capable system.
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