首页> 外文会议>2016 Progress In Electromagnetic Research Symposium >Relationship between spectral efficiency and energy efficiency in 10 Gbps NRZ-OOK, 40 Gbps NRZ-DPSK and 100 Gbps DP-QPSK WDM transmission systems
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Relationship between spectral efficiency and energy efficiency in 10 Gbps NRZ-OOK, 40 Gbps NRZ-DPSK and 100 Gbps DP-QPSK WDM transmission systems

机译:10 Gbps NRZ-OOK,40 Gbps NRZ-DPSK和100 Gbps DP-QPSK WDM传输系统中频谱效率与能效之间的关系

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摘要

In this paper author demonstrates the relationship between spectral efficiency and energy efficiency for 10 Gbps, 40 Gbps and 100 Gbps transmission systems with NRZ-OOK, NRZ-DPSK and DP-QPSK modulation formats respectively. The focus of this research is the wavelength division multiplexed (WDM) transmission systems with Forward Error Correction (FEC) technology with required Bit Error Rate (BER) level that does not exceed 10-3. For this purpose the signal BER level versus cross-channel interval response is evaluated. Obtained data was used for the regeneration length calculations with purpose to define the number of regeneration steps for 200km and 2600km transmission systems. In order to observe relationship between spectral and energy efficiency, power consumption was calculated using different crosschannel intervals -37.5 GHz, 50 GHz and 100 GHz, by means of what different spectral efficiencies were reached. The total power consumption of transmission system was calculated by defining the quantity and power consumption values for all WDM system elements that require electrical energy. In this paper author demonstrates how the amount of transmitted information influence the total system power consumption in each considered transmission system and by using obtained data and spectral efficiency data, the systems energy efficiencies were calculated.
机译:本文作者演示了分别使用NRZ-OOK,NRZ-DPSK和DP-QPSK调制格式的10 Gbps,40 Gbps和100 Gbps传输系统的频谱效率与能效之间的关系。这项研究的重点是采用前向纠错(FEC)技术的波分复用(WDM)传输系统,其所需的误码率(BER)级别不超过10-3。为此,要评估信号BER电平与跨通道间隔响应之间的关系。将获得的数据用于再生长度计算,目的是定义200km和2600km传输系统的再生步数。为了观察频谱效率与能量效率之间的关系,使用不同的跨信道间隔-37.5 GHz,50 GHz和100 GHz计算了功耗,并得出了不同的频谱效率。通过定义所有需要电能的WDM系统元素的数量和功耗值,可以计算出传输系统的总功耗。在本文中,作者演示了所传输的信息量如何影响每个所考虑的传输系统中的总系统功耗,并通过使用获得的数据和频谱效率数据来计算系统的能效。

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