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Featured researches published by Jinglong Zhu.


Optics Express | 2016

Cost effective wavelength reused MDM system for bidirectional mobile fronthaul.

Yuanxiang Chen; Juhao Li; Paikun Zhu; Huanfa Peng; Jinglong Zhu; Yu Tian; Zhongying Wu; Dawei Ge; Peng Zhou; Ke Liu; Yongchi Xu; Jingbiao Chen; Yongqi He; Zhangyuan Chen

In this paper, we propose a cost-effective wavelength-reused mode-division-multiplexing (MDM) system for high speed symmetrical bidirectional mobile fronthaul application. At the base band unit (BBU) pool, one of the spatial modes is used to transmit signal carrier while the others are used for downstream (DS) signal channels. At the remote radio unit (RRU) side, the signal carrier is split and reused as modulation carrier for all the upstream (US) signal channels after mode demultiplexing. Thanks to the low mode crosstalk characteristic of the mode multiplexer/demultiplexer (MUX/DEMUX) and few-mode fiber (FMF), the signal carrier and each signal channel can be effectively separated. The spectral efficiency (SE) is significantly enhanced when multiple spatial channels are used. Compared with other wavelength reused scheme in which the downstream and upstream be modulated in orthogonal dimension, the modulation format of both directions are independent in the proposed wavelength reused MDM system. Therefore, it can easily achieve symmetrical bidirectional transmission without residual re-modulation crosstalk. The proposed scheme is scalable to multi-wavelength application when wavelength MUX/DEMUX is utilized. With the proposed scheme, we demonstrate a proof of concept intensity modulated 4 × 25-Gb/s 16-QAM orthogonal frequency division multiplexing (OFDM) transmission over 10-km FMF using low modal-crosstalk two-mode FMF and MUX/DEMUX with error free operation. The downstream receiver sensitivity is -21 dBm while the upstream receiver sensitivity is -18 dBm for bidirectional transmission. Due to the Rayleigh backscattering and other spurious reflections, the upstream suffers 2 dB power penalty compared with unidirectional transmission without downstream. To mitigate bidirectional transmission impairments, we propose a simple and effective method to suppress Rayleigh backscattering by shifting the downstream subcarrier frequency. A receiver sensitivity improvement of up to 2.5 dB is achieved for upstream with different downstream power.


IEEE Photonics Journal | 2016

MDM-TDM PON Utilizing Self-Coherent Detection-Based OLT and RSOA-Based ONU for High Power Budget

Yuanxiang Chen; Juhao Li; Peng Zhou; Paikun Zhu; Yu Tian; Zhongying Wu; Jinglong Zhu; Ke Liu; Dawei Ge; Jingbiao Chen; Yongqi He; Zhangyuan Chen

A cost-effective mode-division-multiplexing and time-division-multiplexing passive optical network (MDM-TDM PON) utilizing a self-coherent detection for upstream signal at optical line terminal (OLT) and a high-gain reflective semiconductor optical amplifier (RSOA) as an optical amplifier for a downstream signal at optical network units (ONUs) to enhance bidirectional power budget is proposed. Meanwhile, to further reduce the cost of ONU, RSOA is also used as upstream on-off keying (OOK) signal modulator by time compression multiplexing. A novel dual-modulus algorithm is proposed for OOK signal detection at the OLT. We experimentally verify the proposed MDM-TDM PON architecture with an upstream 1-Gb/s OOK signal and a downstream 10-Gb/s orthogonal frequency division multiplexing (OFDM) signal. Due to the high gain of RSOA and high receiver sensitivity of self-coherent detection, a 30-dB bidirectional power budget is achieved after 10-km few-mode fiber and a 20-km standard single-mode fiber at the bit error rate (BER) of 10-3. Optimal seed power and signal power that input to the RSOA are investigated in this paper.


opto electronics and communications conference | 2017

IM-DD MDM transmission over 7-km MMF enabled by all-fiber mode MUX/DEMUX

Han Yan; Bo Hua; Zhongying Wu; Juhao Li; Jinglong Zhu; Zhengbin Li; Zhangyuan Chen; Yongqi He

We experimentally 3-mode mode division multiplexing (MDM) transmission over conventional 7-km multi-mode fiber (MMF). 10-Gb/s intensity modulation and direct detection (IM-DD) are employed. The weakly-coupled mode multiplexer/demultiplexer are realized by cascading mode-selective couplers (MSCs).


IEEE Photonics Journal | 2017

Wavelength Reuse for Short-Reach Optical Access Network Utilizing MDM

Yuanxiang Chen; Juhao Li; Jinglong Zhu; Paikun Zhu; Yu Tian; Huangfa Peng; Yongchi Xu; Jingbiao Chen; Yongqi He; Zhangyuan Chen

Wavelength reuse has been proposed as an effective solution to realize colorless optical network units (ONUs) for next-generation passive optical network with simplified maintenance and reduced cost. In this paper, we propose a wavelength reused mode-division-multiplexing (MDM) scheme for bidirectional short-reach optical access network with low mode-crosstalk multiplexer/demultiplexer (MUX/DEMUX) and few-mode fiber (FMF). In downstream (DS) transmission, one of the spatial modes in FMF is used to transmit optical carriers, while the others are used as DS signal channels. In upstream (US) transmission, the carrier is split to all the ONUs for US remodulation. By utilizing low mode-crosstalk mode MUX/DEMUX and FMF, the carrier and each signal channel can be effectively separated. Compared with other wavelength reused schemes in which the DS and US transmission are modulated in orthogonal dimension, the signal qualities on two transmission directions are independent in the proposed scheme, and symmetrical bidirectional transmission without residual remodulation crosstalk can be achieved. What is more, to reduce bidirectional Rayleigh backscattering noise, we propose to use different optical sidebands for DS and US transmission. With the proposed scheme, we experimentally demonstrate symmetrical bidirectional 2 × 12.5-Gb/s quadrature phase-shift keying (QPSK) orthogonal-frequency-division-multiplexing (OFDM) intensity-modulation and direct-detection transmission over 11.5-km four-mode FMF. With Rayleigh backscattering noise mitigation, a Q-factor improvement of 2 dB is achieved for the US signal at the DS signal-to-carrier power ratio of −27 dB.


Asia Communications and Photonics Conference 2016 (2016), paper AS2D.3 | 2016

Demonstration of Software-reconfigurable Elastic Spectrum Manipulation Node Enabled by Optical Comb

Paikun Zhu; Yuanxiang Chen; Han Yan; Bo Hua; Juhao Li; Yu Tian; Zhongying Wu; Dawei Ge; Jinglong Zhu; Zhangyuan Chen; Yongqi He

We experimentally demonstrate optical comb-enabled elastic spectrum manipulation node for EON. Simultaneous comb-based Add-Drop of over 260 OFDM subbands, multi-band defragmentation and power equalization are verified. OpenFlow extensions are also discussed.


Asia Communications and Photonics Conference 2016 (2016), paper AS1D.5 | 2016

Experimental Demonstration of Flexible Multicasting and Aggregation Functionality for TWDM PON

Yuanxiang Chen; Juhao Li; Jinglong Zhu; Paikun Zhu; Yu Tian; Zhongying Wu; Huangfa Peng; Yongchi Xu; Jingbiao Chen; Yongqi He; Zhangyuan Chen

Flexible multicasting and aggregation functionality are proposed for TWDM PON utilizing multiple-pump FWM and cyclic AWG. A proof-of-concept 10-Gb/s OOK and QPSK-OFDM signal multicasting and aggregation to seven PON links are experimentally demonstrated.


optical fiber communication conference | 2017

4-Mode MDM transmission over MMF with direct detection enabled by cascaded mode-selective couplers

Zhongying Wu; Juhao Li; Yu Tian; Dawei Ge; Jinglong Zhu; Qi Mo; Fang Ren; Jinyi Yu; Zhengbin Li; Zhangyuan Chen; Yongqi He


optical fiber communication conference | 2018

Demonstration of Weakly-coupled MDM-WDM Amplification and Transmission over 15-km FMF Employing IM/DD

Jinglong Zhu; Juhao Li; Dawei Ge; Zhongying Wu; Fang Ren; Zhenzhen Zhang; Xiaoying Li; Yichi Zhang; Zhengbin Li; Zhangyuan Chen; Yongqi He


optical fiber communication conference | 2018

Design of a Weakly-Coupled Ring-Core FMF and Demonstration of 6-mode 10-km IM/DD Transmission

Dawei Ge; Juhao Li; Jinglong Zhu; Lei Shen; Yuyang Gao; Jinyi Yu; Zhongying Wu; Zhengbin Li; Zhangyuan Chen; Yongqi He


optical fiber communication conference | 2018

3×4×10-Gb/s MDM-WDM Transmission over 21-km OM3 MMF with OOK Modulation and Direct Detection

Zhongying Wu; Juhao Li; Yu Tian; Dawei Ge; Jinglong Zhu; Yichi Zhang; Jinyi Yu; Zhengbin Li; Zhangyuan Chen; Yongqi He

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