Design and analysis of DPSK and DQPSK modulated UD-WDM system at different data rates for long-haul communication

Rajeev, C. Kumar
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Abstract

Advanced modulation techniques play an important role in high-speed data transmission. For this research work, a 400-channel ultra-dense wavelength division multiplexed (UD-WDM) system is designed and simulated using 100 Gb/s and 160 Gb/s per channel transmission data rates along with channel spacing of 0.2 nm. The designed system is based on two highly spectral efficient modulation techniques, namely differential phase-shift keying (DPSK) and differential quadrature phase-shift keying (DQPSK). The performance of both modulation techniques is analyzed using some performance parameters such as received output power, Quality factor (Q-factor), and bit error rate (BER) with varying transmission distances from 100-2000 km. The results obtained from the simulation show that the DQPSK-based UD-WDM system performs better than the DPSK-based UD-WDM system in terms of Q-factor, BER, and received output power for both 100 Gb/s data rate as well as 160 Gb/s data rate because it is more tolerant to linear and nonlinear effects. At 100 Gb/s data rate for the DQPSK modulated system, the minimum BER value of 10-12, the output power of -36 dBm, and the Q-factor of 15 dB are reported. The minimum BER value of 10-8, maximum Q-factor of 12.2 dB, and the output power of -31 dBm are reported for DQPSK modulated system at 160 Gb/s data rate.
远距离通信中不同数据速率的DPSK和DQPSK调制UD-WDM系统的设计与分析
先进的调制技术在高速数据传输中起着重要的作用。为此,设计并仿真了400通道超密集波分复用(dd - wdm)系统,采用每通道100 Gb/s和160 Gb/s传输数据速率,通道间距为0.2 nm。设计的系统基于两种高频谱效率的调制技术,即差分相移键控(DPSK)和差分正交相移键控(DQPSK)。利用接收输出功率、质量因子(Q-factor)和误码率(BER)等性能参数对两种调制技术在100-2000 km不同传输距离下的性能进行了分析。仿真结果表明,基于dqpsk的udp - wdm系统在100 Gb/s和160 Gb/s数据速率下的q因子、误码率和接收输出功率都优于基于dqpsk的udp - wdm系统,因为dqpsk对线性和非线性影响的容受性更强。在数据速率为100gb /s时,DQPSK调制系统的最小误码率为10 ~ 12,输出功率为- 36dbm, q因子为15db。在160 Gb/s数据速率下,DQPSK调制系统的最小误码率为10-8,最大q因子为12.2 dB,输出功率为-31 dBm。
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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