A simple IQ-regeneration technique for six-port communication receivers

T. Hentschel
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引用次数: 26

Abstract

Modern radio terminals for high data rate communication require wideband receivers. The well-known receiver architectures, such as zero-IF-receivers usually require very accurate component matching. In order to relax these requirements digital techniques are used on one side. On the other side alternative receiver architectures such as the six-port are investigated. The six-port has been introduced as a very flexible and elegant means for microwave measurements in the 1960s and 1970s. Later on it has been used in radar applications. It was not until recently that communication receivers have been built upon the six-port principle. In order to generate the required IQ-signal from the output signals of a six-port, knowledge of the six-port structure and/or of the signal statistics must be available. The first can be obtained by means of calibration procedures, while the latter can be used in blind techniques. Classical calibration procedures employ probes that are connected to the six-port. This is not applicable in communication receivers. Alternatively, a method is presented that uses the incoming signal as the calibration-driving probe and moreover uses the fact that the I-component and the Q-component of the signal are uncorrelated in most practical scenarios.
一个简单的iq再生技术为六端口通信接收器
用于高数据速率通信的现代无线电终端需要宽带接收器。众所周知的接收器架构,如零中频接收器,通常需要非常精确的组件匹配。为了放松这些要求,一方面使用了数字技术。另一方面,研究了六端口等替代接收器架构。在20世纪60年代和70年代,六端口作为一种非常灵活和优雅的微波测量手段被引入。后来,它已用于雷达应用。直到最近,通信接收器才建立在六端口原理之上。为了从六端口的输出信号中生成所需的iq信号,必须了解六端口结构和/或信号统计数据。前者可通过校准程序获得,后者可用于盲法技术。经典校准程序采用连接到六端口的探头。这不适用于通信接收器。另一种方法是利用输入信号作为校准驱动探头,并利用信号的i分量和q分量在大多数实际情况下不相关的事实。
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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