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Reliable Composition of MAPE-K Loops in Self-Adaptive Software Systems

机译:自适应软件系统中的MAPE-K循环的可靠组成

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Self-adaptive systems (SASs) are controlled by autonomic manager (AM). This ensures the QoS of such complex systems within highly dynamic and unpredictable contexts. However, the massive integration of the adaptation abilities increased drastically the complexity of the AMs. To decrease the complexity and ensure correctness adaptation, scholars propose a subdivision into multi-autonomic entities (AEs) as a design approach. In such a design approach, SASs are controlled through multiple interacting AMs implementing each the well-known MAPE-K Loop. In this article, the writers propose a refinement pattern of interacting multiple MAPE-K Loops to achieve global adaptation without conflict. The authors contribute with a notation to describe the interaction of multiple MAPE-K Control Loops. To ensure the coordinated multi-attributes control, the interaction of the AEs is achieved through the knowledge base of the MAPE-K Loops. To validate the proposed pattern, a case study in the field of Electric Vehicle is presented.
机译:自适应系统(SASS)由自主经理(AM)控制。这确保了在高度动态和不可预测的环境中如此复杂系统的QoS。然而,适应能力的大规模集成急剧增加了AMS的复杂性。为了减少复杂性并确保正确性适应,学者提出了一个细分,以将多自主实体(AES)为设计方法。在这种设计方法中,SASS通过多个交互AMS控制,实现每个众所周知的MAPE-K环路。在本文中,作者提出了一种在没有冲突的情况下互动多个MAPE-K循环的细化模式,以实现全球适应。作者有助于描述多个MAPE-K控制循环的相互作用。为确保协调的多属性控制,通过MAPE-K循环的知识库实现AES的交互。为了验证所提出的图案,提出了在电动车辆领域的案例研究。

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