用于并发无线电的三波段单链无线电接收机

Stephen Henthorn, T. O’Farrell, S. Asif, M. R. Anbiyaei, K. L. Ford
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引用次数: 3

摘要

可以通过聚合多个非连续频带来提高未来低于6 GHz频率的移动设备的吞吐量,这些频带可以使用相同或不同的无线电接入技术来传输信息。然而,使用传统的无线电技术,每个频段都需要一个完整的射频(RF)链,由于移动站(MS)的空间和能耗限制,限制了可能的增加。本文采用可调模拟前端和软件定义无线电(SDR)技术,提出并测量了用于并发接收传输16-QAM LTE信号的三个非连续频带的单个射频链无线电。与单频带接收相比,在最坏并发接收情况下,接收机灵敏度仅下降6dB。这表明,在满足3GPP标准的同时,单一无线电链可以同时接收复杂的信号技术,为未来标准的紧凑、高效、多频段接收器开辟了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Tri-band Single Chain Radio Receiver for Concurrent Radio
The bandwidth available for improving throughputs to future mobile devices at sub-6 GHz frequencies can be increased through aggregating multiple non-contiguous bands, which may be using the same or different radio access technologies to transmit information. However, with conventional radio technology, a complete radio frequency (RF) chain is required for each band, limiting the possible increase due to space and energy consumption restraints in the mobile station (MS). This paper presents and measures a single RF chain radio for concurrent reception of three non-contiguous bands transmitting 16-QAM LTE signals, using a tunable analogue front-end and software defined radio (SDR) techniques. The receiver sensitivity is degraded by only 6dB under worst-case concurrent reception, compared with reception of a single band. This demonstrates that complex signaling techniques can be received concurrently with a single radio chain while meeting the 3GPP standards, opening the way to compact, efficient, multiband receivers for future standards.
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