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A Novel Economical Duty Cycle Division Multiplexing with Electrical Multiplexer and Demultiplexer for Optical Communication Systems

机译:一种新型经济占空比复用与电气多路复用器和多路分解器进行光通信系统

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A duty cycle division multiplexing (DCDM) is proposed as an alternative multiplexing technique. It can be applied in either wired or wireless communication systems, although the focus in this paper is in optical fiber communications. The channel multiplexing and demultiplexing is performed electrically at single user bit rate which is very economic. In this paper, we examine 3 channels each operating at 10 Gb/s over a single optical carrier. The performance comparison is made against return-to-zero (R) transmitted pulses. Back-to-back receiver sensitivity and required optical signal-to-noise ratio (OSNR) of this system are examined and compared with 10 Gb/s R pulses. Effect of the chromatic dispersion is tested for DCDM channels and compared with 30 Gb/s R coding at the same transmission power. Also, the launched power of these two techniques is measured against system dispersion at BER of 10~(-9). The results show that, DCDM can support higher amount of chromatic dispersion than that R technique. In the end, receiver sensitivity and OSNR of 3-channel DCDM is tested at different bit rate of 2.5, 10, 25 and 40 Gb/s. A receiver sensitivity and OSNR of -16.8 dBm and 34.6 dB is required for the worst DCDM user when the system running at 3 40 Gb/s respectively.
机译:占空比复用(DCDM)被提出为替代复用技术。它可以应用于有线或无线通信系统,尽管本文的重点是光纤通信。信道复用和解复用是在非常经济的单一用户比特率的情况下电动执行的。在本文中,我们在单个光学载体上检查每个通道,每个通道在10 Gb / s处运行。对返回零(R)传输脉冲进行性能比较。检查该系统的背对背接收器灵敏度和所需的光学信噪比(OSNR),并与10 GB / s R脉冲进行比较。色散对DCDM通道的影响,并与30GB / S R编码相同的传输功率进行比较。此外,这两种技术的发射功率是以10〜(-9)的系统分散测量的。结果表明,DCDM可以支持比该R技术更高的色散量。最终,以2.5,10,25和40 Gb / s的不同比特率测试3通道DCDM的接收器灵敏度和OSNR。最差DCDM用户分别在30 Gb / s的运行时,最差DCDM用户需要-16.8 dBm和34.6dB的接收器灵敏度和34.6dB。

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