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Ultra-Low Phase Noise Frequency Synthesis for THz Communications Using Optoelectronic PLLs

机译:使用光电PLL的THz通信的超低相位噪声频率合成

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Recently it has been demonstrated that an optoelectronic phase-locked loop (OEPLL) using a mode-locked laser as a reference oscillator achieves significantly lower phase noise than conventional electronic frequency synthesizers. In this paper a concept for an OEPLL-based frequency synthesizer is presented and it is investigated how it can be used as a local oscillator (LO) for THz transceivers in order to improve the signal quality in THz wireless communications. The concept of the OEPLL is presented and it's measured phase noise is compared to the phase noise of a laboratory-grade electronic frequency synthesizer. The measured phase noise spectra of both synthesizers at 10 GHz are then used to model LO phase noise at 320 GHz. Based on models of generic zero-IF transmit and receive frontends, THz signals with different modulation formats and Baud rates are simulated at system level using the modeled LO phase noise for the two LO approaches. Finally, the results are compared.
机译:最近,已经证明,使用锁模激光器作为参考振荡器的光电锁相环(OEPLL)与传统的电子频率合成器相比,可显着降低相位噪声。本文提出了一种基于OEPLL的频率合成器的概念,并研究了如何将其用作THz收发器的本地振荡器(LO),以改善THz无线通信中的信号质量。提出了OEPLL的概念,并将其测得的相位噪声与实验室级电子频率合成器的相位噪声进行比较。然后将两个合成器在10 GHz处测得的相位噪声频谱用于模拟320 GHz的LO相位噪声。基于通用零中频发送和接收前端的模型,使用针对两种本振方法建模的本振相位噪声,在系统级对具有不同调制格式和波特率的太赫兹信号进行了仿真。最后,比较结果。

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