330ghz下6G接收机的线性度测量

M. Leinonen, Klaus Nevala, N. Tervo, A. Pärssinen
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引用次数: 3

摘要

未来的第六代(6G)预计将支持高达1tbps的数据速率。6G系统的工作频率将向亚毫米波和太赫兹区域扩展。6G系统还将利用定向波束来补偿链路端之间增加的信号衰减。接收机的线性度(Rx)是任何无线电系统最重要的参数之一。传统的Rx线性度测量依赖于双音测量技术,这需要两个专用的RF信号并将它们组合成测试信号。在300 GHz频段产生两个独立的射频信号导致成本高昂且体积庞大的解决方案。本文提出了一种仅使用一个连续波传输扩频器的6G Rx线性度测量方法。提出了一种将增频器射频输入信号为窄带调幅(AM),在连续载波周围产生侧音的方法。采用载波频率和第一边音作为测试信号,线性度测试类似于传统的不等信号双音测试。结果表明,通过在扩频器输入端对射频输入功率进行回退,可以改变载波电平。通过改变调幅调制指数,可以改变侧音调的电平,使音调输入功率的扫描能够执行Rx线性测量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Linearity Measurement of 6G Receiver with One Transmission Frequency Extender Operating at 330 GHz
The future sixth-generation (6G) is envisioned to support data rates up to 1 Tbps. The operational frequencies of the 6G system will be expanded towards the sub-mmW and THz regions. The 6G systems will utilize directive beams, as well, to compensate increased signal attenuation between link ends. The linearity of a receiver (Rx) is one of the most significant parameters for any radio system. Traditional Rx linearity measurement relies on a two-tone measurement technique, which requires two dedicated RF signals and combining them to the test signal. The generation of two independent RF signals at a 300 GHz frequency band leads to a costly and bulky solution. This paper proposes a linearity measurement method for 6G Rx, which uses only one continuous wave transmission frequency extender. A method is proposed where the RF input signal of frequency extender is narrowband amplitude modulated (AM), generating side tones around continuous wave carrier. The carrier frequency and first side tones are used as test signals, and the linearity test is like a traditional two-tone test with unequal signals. It is shown that the carrier level can be modified by back-offing the RF input power in the frequency extender input. By varying the AM modulation index, the side tones’ levels can be varied, enabling the sweep of the tone input power to perform Rx linearity measurements.
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