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A Model-Driven Approach to Enable Adaptive QoS in DDS-Based Middleware

机译:基于模型的方法在基于DDS的中间件中启用自适应QoS

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Critical and distributed systems need to be reliable and comply with the required performance at run-time. In this vein, data distribution service for real-time systems (DDS) provides developers with highly configurable middleware to control the end-to-end quality of service (QoS) of the applications through a wide range of attributes. However, dynamic and unpredictable environment pose a major challenge to these systems as their workload and resources may fluctuate significantly in time depending on the execution context. Developers usually find it difficult to choose and apply the right DDS QoS attributes, as once selected, they remain fixed during the whole execution of the system. They do not automatically change according to the execution context, e.g., to meet nonfunctional requirements related to performance or resource consumption. Moreover, changing the QoS attributes at run-time may lead to incompatibilities, since the configuration used by the different participants needs to be mutually consistent. In this paper, we propose a model-driven approach that enables the safe, automatic, and transparent adaptation of the QoS attributes in DDS-based middleware, providing the best performance possible within the available resources at run-time. An example in robotics is presented to demonstrate the feasibility and the benefits of our proposal.
机译:关键和分布式系统需要可靠,并在运行时符合所需的性能。因此,实时系统(DDS)的数据分发服务为开发人员提供了高度可配置的中间件,以通过广泛的属性来控制应用程序的端到端服务质量(QoS)。但是,动态和不可预测的环境对这些系统构成了重大挑战,因为它们的工作量和资源可能会根据执行上下文随时间而大幅波动。开发人员通常会发现很难选择和应用正确的DDS QoS属性,因为一旦选定,它们在整个系统执行过程中就保持不变。它们不会根据执行上下文自动更改,例如,以满足与性能或资源消耗相关的非功能性要求。而且,在运行时更改QoS属性可能会导致不兼容,因为不同参与者使用的配置需要相互一致。在本文中,我们提出了一种模型驱动的方法,该方法可以在基于DDS的中间件中安全,自动和透明地适应QoS属性,并在运行时在可用资源内提供最佳性能。给出了机器人技术的示例,以证明我们的建议的可行性和益处。

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