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Resilient Critical Infrastructure Management using Service Oriented Architecture: A Test Case using Airport Collaborative Decision Making

机译:使用面向服务的体系结构的弹性关键基础设施管理:使用机场协作决策的测试用例

摘要

The SERSCIS approach aims to support the use of interconnected systems of services in Critical Infrastructure (CI) applications. The problem of system interconnectedness is aptly demonstrated by ‘Airport Collaborative Decision Making’ (A-CDM). Failure or underperformance of any of the interlinked ICT systems may compromise the ability of airports to plan their use of resources to sustain high levels of air traffic, or to provide accurate aircraft movement forecasts to the wider European air traffic management systems. The proposed solution is to introduce further SERSCIS ICT components to manage dependability and interdependency. These use semantic models of the critical infrastructure, including its ICT services, to identify faults and potential risks and to increase human awareness of them. Semantics allows information and services to be described in such a way that makes them understandable to computers. Thus when a failure (or a threat of failure) is detected, SERSCIS components can take action to manage the consequences, including changing the interdependency relationships between services. In some cases, the components will be able to take action autonomously — e.g. to manage ‘local’ issues such as the allocation of CPU time to maintain service performance, or the selection of services where there are redundant sources available. In other cases the components will alert human operators so they can take action instead. The goal of this paper is to describe a Service Oriented Architecture (SOA) that can be used to address the management of ICT components and interdependencies in critical infrastructure systems.
机译:SERSCIS方法旨在支持在关键基础架构(CI)应用程序中使用互连的服务系统。 “机场协作决策”(A-CDM)恰当地说明了系统互连的问题。任何相互连接的ICT系统的故障或性能不佳可能会损害机场计划其资源使用以维持高水平空中交通流量或向更广泛的欧洲空中交通管理系统提供准确的飞机移动预测的能力。提议的解决方案是引入更多的SERSCIS ICT组件来管理可靠性和相互依赖性。它们使用关键基础设施(包括其ICT服务)的语义模型来识别故障和潜在风险,并提高人们对其的意识。语义允许对信息和服务进行描述,以使计算机可以理解它们。因此,当检测到故障(或故障威胁)时,SERSCIS组件可以采取措施来管理后果,包括更改服务之间的相互依赖关系。在某些情况下,这些组件将能够自主采取行动-例如,来管理“本地”问题,例如分配CPU时间来维持服务性能,或者在有多余资源的情况下选择服务。在其他情况下,这些组件将警告操作员,以便他们可以采取行动。本文的目的是描述一种面向服务的体系结构(SOA),可用于解决ICT组件的管理以及关键基础架构系统中的相互依赖性。

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