商品描述
With the exponential growth of the number of Internet nodes, the volume of the data transported on the backbone has increased with the same trend. The load of the global Internet backbone will soon increase to tens of terabits per second. This indicates that the backbone bandwidth requirements will increase by a factor of 50 to 100 every seven years. Transportation of such high volumes of data requires suitable media with low loss and high bandwidth. Among the available transmission media, optical fibers achieve the best performance in terms of loss and bandwidth. High-speed data can be transported over hundreds of kilometers of single-mode fiber without significant loss in signal integrity. These fibers progressively benefit from reduction of cost and improvement of perf- mance. Meanwhile, the electronic interfaces used in an optical network are not capable of exploiting the ultimate bandwidth of the fiber, limiting the throughput of the network. Different solutions at both the system and the circuit levels have been proposed to increase the data rate of the backbone. System-level solutions are based on the utilization of wave-division multiplexing (WDM), using different colors of light to transmit s- eral sequences simultaneously. In parallel with that, a great deal of effort has been put into increasing the operating rate of the electronic transceivers using highly-developed fabrication processes and novel c- cuit techniques.
商品描述(中文翻譯)
隨著互聯網節點數量的指數增長,骨幹網路上傳輸的數據量也以相同的趨勢增加。全球互聯網骨幹的負載將很快增加到每秒數十兆位元。這表明,骨幹帶寬的需求每七年將增加50到100倍。傳輸如此高容量的數據需要具有低損耗和高帶寬的合適媒介。在可用的傳輸媒介中,光纖在損耗和帶寬方面達到了最佳性能。高速數據可以在數百公里的單模光纖上傳輸,而不會對信號完整性造成重大損失。這些光纖逐漸受益於成本的降低和性能的提升。與此同時,光網路中使用的電子介面無法充分利用光纖的最終帶寬,限制了網路的吞吐量。為了提高骨幹的數據傳輸速率,已提出不同的系統和電路層級解決方案。系統層級的解決方案基於波分多工(WDM)的利用,使用不同顏色的光同時傳輸多個序列。與此同時,還投入了大量精力來提高電子收發器的操作速率,利用高度發展的製造工藝和新穎的電路技術。