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抑制用于直接调制正交频分复用(OFDM)传输的注入锁定波瑞克速率码分复用全光逻辑器件(WRC-FPLD)的弛豫振荡噪声

Suppressing the relaxation oscillation noise of injection-locked WRC-FPLD for directly modulated OFDM transmission.

作者信息

Cheng Min-Chi, Chi Yu-Chieh, Li Yi-Cheng, Tsai Cheng-Ting, Lin Gong-Ru

出版信息

Opt Express. 2014 Jun 30;22(13):15724-36. doi: 10.1364/OE.22.015724.

Abstract

By up-shifting the relaxation oscillation peak and suppressing its relative intensity noise in a weak-resonant-cavity Fabry-Perot laser diode (WRC-FPLD) under intense injection-locking, the directly modulated transmission of optical 16 quadrature amplitude modulation (QAM) orthogonal frequency division multiplexing (OFDM) data-stream is demonstrated. The total bit rate of up to 20 Gbit/s within 5-GHz bandwidth is achieved by using the OFDM subcarrier pre-leveling technique. With increasing the injection-locking power from -12 to -3 dBm, the effective reduction on threshold current of the WRC-FPLD significantly shifts its relaxation oscillation frequency from 5 to 7.5 GHz. This concurrently induces an up-shift of the peak relative intensity noise (RIN) of the WRC-FPLD, and effectively suppresses the background RIN level to -104 dBc/Hz within the OFDM band between 3 and 6 GHz. The enhanced signal-to-noise ratio from 16 to 20 dB leads to a significant reduction of bit-error-rate (BER) of the back-to-back transmitted 16-QAM-OFDM data from 1.3 × 10(-3) to 5 × 10(-5), which slightly degrades to 1.1 × 10(-4) after 25-km single-mode fiber (SMF) transmission. However, the enlarged injection-locking power from -12 to -3 dBm inevitably declines the modulation throughput and increases its negative throughput slope from -0.8 to -1.9 dBm/GHz. After pre-leveling the peak amplitude of the OFDM subcarriers to compensate the throughput degradation of the directly modulated WRC-FPLD, the BER under 25-km SMF transmission can be further improved to 3 × 10(-5) under a receiving power of -3 dBm.

摘要

通过在强注入锁定条件下,提升弱谐振腔法布里-珀罗激光二极管(WRC-FPLD)的弛豫振荡峰值并抑制其相对强度噪声,实现了光16正交幅度调制(QAM)正交频分复用(OFDM)数据流的直接调制传输。通过使用OFDM子载波预均衡技术,在5GHz带宽内实现了高达20Gbit/s的总比特率。随着注入锁定功率从-12dBm增加到-3dBm,WRC-FPLD阈值电流的有效降低使其弛豫振荡频率从5GHz显著移至7.5GHz。这同时导致WRC-FPLD的峰值相对强度噪声(RIN)上移,并在3至6GHz的OFDM频段内有效地将背景RIN电平抑制到-104dBc/Hz。信噪比从16dB提高到20dB,使得背对背传输的16-QAM-OFDM数据的误码率(BER)从1.3×10^(-3)显著降低到5×10^(-5),在25km单模光纤(SMF)传输后略有恶化至1.1×10^(-4)。然而,注入锁定功率从-12dBm增大到-3dBm不可避免地降低了调制吞吐量,并使其负吞吐量斜率从-0.8dBm/GHz增加到-1.9dBm/GHz。在对OFDM子载波的峰值幅度进行预均衡以补偿直接调制WRC-FPLD的吞吐量下降后,在接收功率为-3dBm的情况下,25km SMF传输下的BER可进一步提高到3×10^(-5)。

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