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Policy enforcement system for secure interoperable control in distributed Smart Grid systems

机译:用于分布式智能电网系统中安全互操作控制的策略执行系统

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Interoperability of distributed systems in charge of monitoring and maintaining the different critical domains belonging to Smart Grid scenarios comprise the central topic of this paper. Transparency in control transactions under a secure and reliable architecture is the aim of the policy enforcement system proposed here. The approach is based on the degree of observation of a context and on the role-based access control model defined by the IEC-62351-8 standard. Only authenticated and authorised entities are able to take control of those distributed elements (e.g., IEC-61850 objects) located at distant geographical locations and close to the critical infrastructures (e.g., substations). To ensure the effectiveness of the approach, it is built on graphical-theoretical formulations corresponding to graph theory, where it is possible to illustrate power control networks through power-law distributions whose monitoring relies on structural controllability them. The interconnection of these distributions is subject to a network architecture based on the concept of the supernode where the interoperability depends on a simple rule-based expert system. This expert system focuses not only on accepting or denying access, but also on providing the means to attend to extreme situations, avoiding, as much as possible, the overloading of the communication. Through one practical study we also show the functionalities of the approach and the benefits that the authorisation itself can bring to the interoperability. (C) 2015 Elsevier Ltd. All rights reserved.
机译:负责监视和维护属于智能电网场景的不同关键域的分布式系统的互操作性是本文的主题。在安全可靠的体系结构下,控制事务中的透明度是此处提出的策略执行系统的目标。该方法基于对上下文的观察程度以及基于IEC-62351-8标准定义的基于角色的访问控制模型。只有经过身份验证和授权的实体才能控制位于遥远地理位置且靠近关键基础设施(例如变电站)的那些分布式元素(例如IEC-61850对象)。为了确保该方法的有效性,该方法建立在与图论相对应的图形理论公式的基础上,在该公式中可以通过幂律分布来说明功率控制网络,其功率监控取决于它们的结构可控性。这些分布的互连取决于基于超级节点概念的网络体系结构,其中互操作性取决于简单的基于规则的专家系统。该专家系统不仅着重于接受或拒绝访问,而且着重于提供应对极端情况的手段,并尽可能避免通信的过载。通过一项实践研究,我们还展示了该方法的功能以及授权本身可以给互操作性带来的好处。 (C)2015 Elsevier Ltd.保留所有权利。

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