Fault Detection and Localization Scheme for All-Optical Overlaid-Star TDM Networks

Jun Zheng, Cheng Peng, G. Bochmann
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引用次数: 3

Abstract

Fault detection and localization is a crucial issue in all-optical networks. Since most commercially-available all-optical space switches are incapable of detecting the loss of optical signals along the data paths between its input ports and output ports, fault localization becomes a challenge for providing service survivability in such networks. This paper proposes a fault detection and localization scheme for an all-optical overlaid-star TDM network. The proposed scheme employs a fault localization technique that identifies the location of a failure by detecting the power loss of optical signals in data and control channels. Two alternatives are proposed. One requires a control channel on each wavelength of a fiber link while the other requires a small data block to be transmitted in each non-allocated data channel. Based on the proposed fault localization technique, a fault advertisement protocol is further presented, which can be incorporated into the signaling protocol used in the network to facilitate the provisioning of static protection or dynamic restoration. The data loss, fault detection time, and connection recovery time are analyzed for the different failure scenarios.
全光叠星TDM网络故障检测与定位方案
故障检测与定位是全光网络中的关键问题。由于大多数商用全光空间交换机无法检测其输入端口和输出端口之间的数据路径上的光信号丢失,因此故障定位成为在此类网络中提供业务生存能力的挑战。提出了一种全光覆盖星时分复用网络的故障检测与定位方案。该方案采用故障定位技术,通过检测数据和控制通道中光信号的功率损耗来识别故障的位置。提出了两种备选方案。一种要求在光纤链路的每个波长上都有一个控制信道,而另一种要求在每个非分配的数据信道上传输一个小数据块。在故障定位技术的基础上,进一步提出了一种故障发布协议,该协议可集成到网络中使用的信令协议中,以方便提供静态保护或动态恢复。分析了不同故障场景下的数据丢失、故障检测时间和连接恢复时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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