A self-interference cancellation testbed for full-duplex transceiver prototyping

Chunqing Zhang, L. Laughlin, M. Beach, K. Morris, J. Haine
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引用次数: 8

Abstract

In-Band Full Duplex (IBFD) transceivers can potentially provide significant increases in spectral efficiency by allowing simultaneous transmit and receive on the same frequency at the same time. However any such gains are conditional on effective cancellation of the self-interference. The performance of a self-interference cancellation transceiver depends not only on the system design, but also on implementation specific parameters of the transceiver and cancellation circuitry. Thus, realistic evaluation of cancellation performance can only be performed using hardware prototypes. This paper provides a detailed overview of a highly flexible and reconfigurable self-interference cancellation testbed, which combines active cancellation with either separate Tx and Rx antennas, or an Electrical Balance Duplexer, along with digital baseband cancellation. The system can facilitate investigation on self-interference cancellation performance across a range of physical layer configurations, and provide a platform for the rapid prototyping of digital baseband algorithms within an operational self-interference cancelling transceiver.
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全双工收发器原型的自干扰消除试验台
带内全双工(IBFD)收发器可以通过允许在同一时间在同一频率上同时发送和接收,从而潜在地显著提高频谱效率。然而,任何这种增益都是以有效消除自干扰为条件的。自干扰对消收发器的性能不仅取决于系统设计,还取决于收发器和对消电路的具体实现参数。因此,对取消性能的实际评估只能使用硬件原型来执行。本文提供了一个高度灵活和可重构的自干扰消除试验台的详细概述,该试验台结合了有源消除与单独的Tx和Rx天线,或电平衡双工器,以及数字基带消除。该系统可以促进对各种物理层配置的自干扰消除性能的研究,并为在可操作的自干扰消除收发器中快速构建数字基带算法提供平台。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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