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Development of an Algorithm for Fiber-to-the-Home Passive Optical Network Automatic Self-restoration Scheme using Access Control System

机译:基于访问控制系统的光纤到户无源光网络自动自恢复方案算法的开发

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Problem statement: Cables that are installed outdoors are subjected to harsh environmental conditions which make break down inevitable. When this happen it will disrupt the services and cause trouble to the users. To overcome this is to provide a means of restoring the network in case of failure. We introduced the Access Control System (ACS) and Customer Access Protection Unit (CAPU) to provide FTTH-PON monitoring, fault detection and protection. Approach: To design the C programs for ACS and CAPU, we will come up with the algorithms which describe the switching configuration in general. The switching configurations are tabulated in truth tables and flow charts are constructed. Based on the flow charts, the respective C programs for ACS and CAPU will be written. The C programs will then be tested through simulation. After successful simulations, the programs will be downloaded into the respective PIC microcontrollers in the ACS and CAPU for lab testing. Results: When several faults occur at various lines, each Multi Access Detection System (MADS) informs ACS and all CAPUs of the current line conditions. As programmed, ACS and CAPU will configure their switches to restore the network. When one of the working lines fail, the optical signal will be routed to its dedicated protection line. But when both its working and protection line fail, the optical signal will be routed to its neighboring protection line. Conclusion: We have successfully simulated the restoration of the optical signal when fault occur at its working line by restoring it to its dedicated protection line.
机译:问题陈述:安装在室外的电缆要经受严酷的环境条件,这不可避免地会导致电缆断裂。发生这种情况时,将会中断服务并给用户带来麻烦。克服这一点是提供一种在故障情况下恢复网络的方法。我们推出了访问控制系统(ACS)和客户访问保护单元(CAPU),以提供FTTH-PON监视,故障检测和保护。方法:为了设计用于ACS和CAPU的C程序,我们将提出总体上描述交换配置的算法。开关配置列在真值表中,并构造流程图。根据流程图,将编写ACS和CAPU的相应C程序。然后将通过仿真对C程序进行测试。成功进行仿真后,程序将下载到ACS和CAPU中的相应PIC微控制器中,以进行实验室测试。结果:当各条线路上发生若干故障时,每个多路访问检测系统(MADS)都会将当前线路状况通知ACS和所有CAPU。按照编程,ACS和CAPU将配置其交换机以恢复网络。当其中一条工作线发生故障时,光信号将被路由到其专用保护线。但是,当其工作线路和保护线路均发生故障时,光信号将被路由到其相邻的保护线路。结论:通过将光信号恢复到其专用的保护线,我们已经成功地模拟了光信号在其工作线发生故障时的恢复。

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