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Maintenance Techniques in Distributed Communications Switching Systems

机译:分布式通信交换系统中的维护技术

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The reliability and maintainability design criteria that were a part of large central-control communication systems, have been combined to produce deferred maintenance concepts in fully distributed communication systems. Combining these concepts allows the achievement of a cost-effective life-cycle design for communication switching systems. In a hardware/software environment one should not separate hardware maintainability and software maintainability, nor separate the reliability and maintainability of the system. Reliability models are being developed that reflect a constant rate for transient faults and a decreasing rate for catastrophic faults. The relationship of software bugs to their number and type of manifestation is being defined. Designs for primarily non-attended system sites should include appropriate maintenance concepts in order to be cost effective. If two or more individual repairs can be made with each maintenance visit to a site, the total area maintenance staff can be reduced. Implementation of deferred maintenance techniques can raise the availability level of the services provided, especially for a distributed communication switching system. Several examples of practical techniques for developing deferred maintenance concepts are presented, and topics such as the manning versus non-manning of sites, the time of day effects on state diagrams, centralized maintenance, and computer modeling techniques are discussed. The current and potential maintainability concepts and analysis tools that are discussed in this paper can be used to develop cost-effective maintenance concepts as distributed systems become more prevalent.
机译:作为大型中央控制通信系统一部分的可靠性和可维护性设计标准已经组合在一起,以在完全分布式的通信系统中产生延迟的维护概念。结合这些概念,可以实现通信交换系统的经济高效的生命周期设计。在硬件/软件环境中,不应将硬件可维护性和软件可维护性分开,也不应将系统的可靠性和可维护性分开。正在开发反映瞬态故障的速率恒定和灾难性故障的速率降低的可靠性模型。正在定义软件错误与其数量和表现类型的关系。主要是无人值守的系统站点的设计应包括适当的维护概念,以便具有成本效益。如果每次进行现场维护都可以进行两次或更多次的维修,则可以减少总的维护人员。延迟维护技术的实施可以提高所提供服务的可用性级别,尤其是对于分布式通信交换系统而言。提出了一些用于开发延期维护概念的实用技术示例,并讨论了诸如站点的人员配置与非人员配置,状态时间对时间的影响,集中维护和计算机建模技术等主题。随着分布式系统的日益普及,本文讨论的当前和潜在的可维护性概念和分析工具可用于开发具有成本效益的维护概念。

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