光纤无线电系统中HBT光电混频器的设计

H. Harun, S. M. Idrus, A. .. Mohammad, N. Mohamed
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引用次数: 11

摘要

光纤无线电(RoF)系统是提供高可靠通信服务的解决方案。该系统的特点是具有光纤链路和自由空间无线电路径,以利用两种互补技术的协同作用;宽带移动无线接入和固定光接入。RoF系统需要光电混频来检测射频调制光信号并进行频率上转换。在这项工作中,带光接入的三端InP/InGaAs HBT被用作前端RoF光接收器配置的光电混频器(OEM)。因此,在这种配置下,光检测和频率转换可以在p-i-n光电二极管和HBT器件中实现,大大简化了传统方法。利用非线性微波模拟器对RoF OEM进行了仿真,并进行了谐波平衡分析,得到了真实的光电探测模型和非线性动态光电混合行为。本文报道了400 MHz中频调制信号到3.4 GHz上变频射频信号的最大内部混频效率为- 5.2 dB,其LO功率为- 2dbm,与传统理论分析一致。本文将介绍RoF OEM的工作原理、器件结构及其特点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
HBT Optoelectronic Mixer Design for Radio over Fiber System
Radio over fiber (RoF) system is the solution for the providing highly reliable communication service. This system is characterized by having both a fiber optic link and free-space radio path to exploit the synergy of two complementary technologies; the broadband mobile wireless access and fixed optical access. Optoelectronic mixing is required in RoF systems to detect the RF modulated optical signal and perform frequency up-conversion. In this work, three-terminal InP/InGaAs HBT with optical access has been used as the optoelectronic mixer (OEM) for front-end RoF optical receiver configuration. Thus in this configuration, the photodetection and frequency conversion can be achieved in p-i-n photodiode and HBT device, which considerably simplify the conventional method. The RoF OEM was successfully simulated using a nonlinear microwave simulator to perform harmonics balance analysis, which represented actual photodetection model and nonlinear dynamic optoelectronic mixing behavior. In this paper we reported the - 5.2 dB maximum internal mixing efficiency for 400 MHz IF modulated signal to 3.4 GHz upconverted RF signal with LO power is -2dBm, and that agreed with conventional theoretical analysis. In this article, the theory of operation, the device structure of the RoF OEM and its characteristic will be presented.
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