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Issues on the design of survivable common channel signaling networks

机译:可生存的公共信道信令网络的设计问题

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Common channel signaling networks (CCSNs) play a central role in the delivery of a wide range of telecommunications services. In designing such networks, it is of paramount importance to have redundancy in CCS network elements (signaling points and signaling linksets) and to achieve architectural diversity in the transport network that provides bandwidth, transmission equipment, transport media, and physical structures to the CCSN. Such design considerations can help reduce the probability of occurrence or limit the scope of network outages due to traffic congestion and/or transmission equipment or transport facility failures. This paper contains a high-level discussion of issues relevant to the design of survivable CCSN architectures, provides a framework for CCSN survivability analysis, and presents novel heuristics that can be used to compute paths across the transport network on which to route signaling linksets, subject to diversity constraints that include combinations of "two-way diversity" and "three-way diversity." This first attempt at formally defining the topology design problem and formulating architectural diversity constraints for CCSNs can provide the technical basis for further CCSN survivability studies.
机译:公用信道信令网络(CCSN)在各种电信服务的交付中起着核心作用。在设计此类网络时,至关重要的是在CCS网络元素(信令点和信令链路集)中具有冗余度,并在为CCSN提供带宽,传输设备,传输媒体和物理结构的传输网络中实现体系结构的多样性。这样的设计考虑因素可以帮助减少发生的可能性或限制由于交通拥堵和/或传输设备或运输设施故障而导致的网络中断的范围。本文包含与可生存的CCSN架构设计相关的问题的高层讨论,提供了CCSN生存能力分析的框架,并提出了可用于计算跨传输网络路由信令链路集的路径的新颖启发式方法,主题包括“双向分集”和“三分集”组合的多样性约束。正式定义拓扑设计问题并为CCSN制定体系结构多样性约束的首次尝试可以为进一步CCSN生存能力研究提供技术基础。

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