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A run-time verification framework for smart grid applications implemented on simulation frameworks

机译:在模拟框架上实现的用于智能电网应用程序的运行时验证框架

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摘要

Smart grid applications are implemented and tested with simulation frameworks as the developers usually do not have access to large sensor networks to be used as a test bed. The developers are forced to map the implementation onto these frameworks which results in a deviation between the architecture and the code. On its turn this deviation makes it hard to verify behavioral constraints that are described at the architectural level. We have developed the ConArch toolset to support the automated verification of architecture-level behavioral constraints. A key feature of ConArch is programmable mapping for architecture to the implementation. Here, developers implement queries to identify the points in the target program that correspond to architectural interactions. ConArch generates runtime observers that monitor the flow of execution between these points and verifies whether this flow conforms to the behavioral constraints. We illustrate how the programmable mappings can be exploited for verifying behavioral constraints of a smart grid application that is implemented with two simulation frameworks. © 2013 IEEE.
机译:智能电网应用程序是通过仿真框架来实现和测试的,因为开发人员通常无法访问大型传感器网络以用作测试平台。开发人员被迫将实现映射到这些框架上,从而导致体系结构和代码之间的差异。反过来,这种偏差使得很难验证在体系结构级别描述的行为约束。我们已经开发了ConArch工具集,以支持对架构级别行为约束的自动验证。 ConArch的一个关键功能是从架构到实现的可编程映射。在这里,开发人员实施查询以识别目标程序中与体系结构交互相对应的点。 ConArch生成运行时观察程序,以监视这些点之间的执行流,并验证该流是否符合行为约束。我们说明了如何利用可编程映射来验证通过两个仿真框架实现的智能电网应用程序的行为约束。 ©2013 IEEE。

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