建模,量化,优化-能源效率在分布式,嵌入式系统

M. Vodel, René Bergelt, W. Hardt
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引用次数: 2

摘要

在过去的十年中,能源效率成为IT领域最具挑战性的研究领域之一。在优化了大型硬件基础设施(例如计算中心或服务器集群)之后,现在的重点已经迅速改变。目前的研发项目涉及两个主要领域。一方面是嵌入式的、能源自给自足的系统架构,另一方面是无线通信技术,使移动操作成为可能。由于这些平台的能源资源非常有限,因此系统运行时间是一个关键参数。特别是在分布式环境中多个系统的协作场景中,高效的通信特性和所有系统的可用性对于确保稳健运行至关重要。因此,优化策略是必要的,以延长运行时间和改善通信行为。在本文中,我们批判性地讨论了分布式嵌入式系统的能源效率,重点是通信方面。我们引入了一个易于使用的估计模型以及相应的成本函数来量化能源效率。在这种情况下,我们评估了不同抽象层的几种优化策略,包括它们的能源效率及其对通信行为的影响。我们分析唤醒接收器技术以及现代数据聚合方法-行星。实现的实际测试场景表示具有特定唤醒接收器支持的硬件平台的无线网络拓扑。结果表明,如果配置方案符合环境条件,则可以显著提高能源效率。
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Modelling, quantification, optimisation - energy efficiency in distributed, embedded systems
During the last decade, energy efficiency became one of the most challenging research fields in the IT domain. After optimising large-scaled hardware infrastructures, e.g. computing centres or server clusters, nowadays the focus has changed rapidly. Current R&D projects deal with two major areas. On the one hand embedded, energy self-sufficient system architectures and on the other hand wireless communication technologies to enable mobile operation. Due to strongly limited energy resources within these platforms, the system runtime represents a critical parameter. Especially in case of cooperative scenarios with multiple systems in a distributed environment, efficient communication features and the availability of all systems are essential to ensure a robust operation. Accordingly, optimisation strategies are necessary to prolong the runtime and to improve the communication behaviour. In this paper, we critically discuss energy efficiency in distributed, embedded systems with focus on the communication aspects. We introduce an easy to use estimation model as well as the respective cost functions for quantifying the energy efficiency. In this context, we evaluate several optimisation strategies on different abstraction layers regarding their energy efficiency and their impact on the communication behaviour. We analyse wake-up receiver technologies as well as a modern data aggregation approach - PLANetary. The implemented real-world test scenario represents a wireless network topology with specific, wake-up receiver enabled hardware platforms. The results clarify, that if the configuration scheme fits to the environmental conditions, significant improvements of the energy efficiency are possible.
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