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The impact of SONET digital cross-connect system architecture on distributed restoration

机译:SONET数字交叉连接系统体系结构对分布式恢复的影响

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The viability of distributed control restoration using digital cross-connect systems (DCS) depends on its capability for restoring services within specified time requirements, and its economics for providing restoration compared to other alternatives. The authors report a Bellcore study for the impact of the DCS architecture on distributed restoration. This study concludes that currently proposed distributed control DCS self-healing schemes may not meet the 2 second restoration objective for large metropolitan local exchange carrier's networks, regardless of the distributed algorithm used, if the present DCS system architecture which uses serial message processing and serial path cross-connection remains unchanged. They also discuss several DCS architecture enhancement options, including a parallel processing/cross-connect DCS architecture, which may improve the service restoration time.
机译:使用数字交叉连接系统(DCS)进行分布式控制恢复的可行性取决于其在指定时间要求内恢复服务的能力,以及与其他替代方案相比提供恢复的经济性。作者报告了一项Bellcore研究,研究DCS体系结构对分布式恢复的影响。这项研究得出的结论是,如果当前的DCS系统体系结构使用串行消息处理和串行路径,那么无论采用哪种分布式算法,当前提出的分布式控制DCS自愈方案可能都无法满足大型都市本地交换运营商网络的2秒恢复目标。交叉连接保持不变。他们还将讨论几种DCS体系结构增强选项,包括并行处理/交叉连接DCS体系结构,这可能会缩短服务恢复时间。

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