首页> 外文期刊>Quantum Electronics, IEEE Journal of >Performance Analysis on Using Period-One Oscillation of Optically Injected Semiconductor Lasers for Radio-Over-Fiber Uplinks
【24h】

Performance Analysis on Using Period-One Oscillation of Optically Injected Semiconductor Lasers for Radio-Over-Fiber Uplinks

机译:将光学注入半导体激光器的周期一振荡用于无线光纤上行链路的性能分析

获取原文
获取原文并翻译 | 示例
       

摘要

Nonlinear period-one (P1) dynamics of a semiconductor laser are investigated for radio-over-fiber uplink transmission. By optical injection locking, the laser in a base station is driven into the P1 oscillation state, which is further locked by the uplink microwave signal through modulation on the bias current. Due to double locking by both the optical injection and current modulation, the uplink microwave signal is converted into an optical signal for transmission to the central office. Comprehensive numerical simulations reveal that the proposed uplink transmission based on the P1 state provides wide, continuous, and optically-controlled tunability for the uplink subcarrier frequency, which exceeds the laser modulation bandwidth. The laser with a relaxation resonance frequency of only 10.25 GHz is shown to support subcarrier frequencies reaching 60 GHz. Compared to the commonly used stable injection locking state and the free-running state, the proposed P1 state generates the microwave oscillation by the inherent nonlinear dynamics and thus reduces the requirement on the uplink signal strength for low-error transmission. Both electrical demodulation and all-optical demodulation are investigated, where the latter is found to be better in terms of the immunity to dispersion and the speed requirement on optoelectronic conversion. The results illustrate the capability of using the P1 oscillation state for optically controlled uplink transmissions.
机译:研究了光纤激光器无线传输上行链路传输的半导体激光器的非线性周期一(P1)动力学。通过光学注入锁定,基站中的激光器被驱动为P1振荡状态,通过对偏置电流进行调制,上行链路微波信号将其进一步锁定。由于光注入和电流调制的双重锁定,上行链路微波信号被转换为光信号以传输到中心局。全面的数值模拟表明,基于P1状态的建议上行链路传输为上行链路子载波频率提供了宽,连续且由光控制的可调性,这超出了激光调制带宽。示出了具有仅10.25 GHz的弛豫谐振频率的激光器支持达到60 GHz的子载波频率。与常用的稳定注入锁定状态和自由运行状态相比,建议的P1状态通过固有的非线性动力学产生微波振荡,从而降低了对低误差传输的上行链路信号强度的要求。对电解调和全光解调均进行了研究,发现后者在色散抗扰度和光电转换速度要求方面更好。结果说明了将P1振荡状态用于光控上行链路传输的能力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号