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Microwave photonic polyharmonic probing for fiber optical telecommunication structures and measuring systems sensors monitoring

机译:微波光子多发性探头光纤电信结构和测量系统传感器监测

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In this article, the advantages of the unity of sensory and telecommunication approaches will be shown, using examples of monitoring systems for second-generation telecommunication passive optical networks (PON). In comparison with the TDM network architecture, its combination with the WDM architecture is much more efficient, both in terms of the number of channels per fiber, and in terms of the number of channels per laser. This architecture showed a high coverage of monitoring objects by sensors in optically efficient network organization with their small number. Theoretically, the number of sensors in the fiber optical sensor system (FOSS) can be expanded to 256 sensors using two fibers. Note that in the fiber optical telecommunication system (FOTS) the maintenance of 256 PON TDM-WDM terminals is a typical requirement. Thus, monitoring tasks for FOTS and FOSS PON are based on unified approaches. In general, when designing a FOTS, it is necessary to take into account the close relationship that exists between all the factors that determine the characteristics of the network elements, with the existing economic conditions, which will create an optimal network.
机译:在本文中,将使用用于第二代电信无源光网络(PON)的监控系统的示例,示出了感官和电信方法的统一的优点。与TDM网络架构相比,其与WDM架构的组合在每个光纤的信道数量方面都更有效,并且就每个激光器的通道数而言。这种架构在光学有效的网络组织中,通过较小的网络组织的传感器显示了监视对象的高度覆盖。从理论上讲,光纤传感器系统(FOSS)中的传感器的数量可以使用两个纤维扩展到256个传感器。请注意,在光纤电信系统(FOT)中,256 PON TDM-WDM终端的维护是典型的要求。因此,对FOT和FOSS PON的监测任务是基于统一的方法。通常,在设计FOT时,有必要考虑到确定网络元素特性的所有因素之间存在的密切关系,其中具有现有的经济条件,这将创建最佳网络。

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