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首页> 外文期刊>American Journal of Optics and Photonics >20 G bps Pulse Amplitude Modulation (PAM) Format for Capacity Upgrade in Optical Communications
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20 G bps Pulse Amplitude Modulation (PAM) Format for Capacity Upgrade in Optical Communications

机译:20 G bps脉冲幅度调制(PAM)格式,用于光通信中的容量升级

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In the fast growing society, communication is broadening so rapidly such that internet users need to access information rapidly and amount of data flowing through internet is very huge. Various techniques for increasing capacity in data centers have drawn lots of attention in recent years. One way of addressing this demand is introduction of advanced optical modulation formats which has been motivated by the demand for high transmission capacity and better system reliability. In this work, two electrical data streams at bit rate of 10 G bps each were combined to produce 20 G bps multilevel system 4-PAM with four levels. One of the four amplitudes represents a combination of two bits (00, 01, 10, 11) per symbol. This therefore transmits two bits in parallel and therefore the data rate is doubled. The generated data was transmitted over 3.21km G.652 fiber at standard BER of 10~(-9). This format can be used to simultaneously transmit two bits per symbol per wavelength thereby increasing the overall link transmission speed while maintaining the channel bandwidth. We further demonstrated a digital signal processing assisted receiver to efficiently recover the transmitted signal without employing costly receiver hardware. The ability to use a single photodiode to demodulate the multilevel signal, brings a further reduction in cost on implementing the scheme. This spectral efficient modulation format will achieve even higher data rate per channel when coupled in a Dense Wavelength Division Multiplexing (DWDM) system. This will therefore lead to significant cost saving of capital investment and easing the system management and hence an efficient utilization of bandwidth.
机译:在快速发展的社会中,通信正在迅速扩展,以至于互联网用户需要快速访问信息,并且流经互联网的数据量非常大。近年来,用于提高数据中心容量的各种技术引起了很多关注。解决此需求的一种方法是引入高级光学调制格式,这是由对高传输容量和更好的系统可靠性的需求所激发的。在这项工作中,将两个比特率分别为10 G bps的电气数据流组合在一起,以产生20 G bps的具有四个级别的多级系统4-PAM。四个幅度之一代表每个符号的两个位(00、01、10、11)的组合。因此,这并行传输两个比特,因此数据速率加倍。产生的数据通过3.21km的G.652光纤以10〜(-9)的标准BER传输。此格式可用于同时在每个波长的每个符号中传输两个比特,从而提高总体链路传输速度,同时保持信道带宽。我们进一步展示了一种数字信号处理辅助接收机,可以有效地恢复发送的信号,而无需使用昂贵的接收机硬件。使用单个光电二极管解调多电平信号的能力进一步降低了实施该方案的成本。当在密集波分复用(DWDM)系统中耦合时,这种频谱有效的调制格式将在每个通道上实现更高的数据速率。因此,这将导致大量的资本投资成本节省并简化系统管理,从而有效地利用带宽。

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