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Towards a load balancer architecture for multi-core mobile communication systems

机译:迈向用于多核移动通信系统的负载均衡器体系结构

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Due to the exponential growth of the mobile communication systems in the past decade, more efforts have been invested in performance increase solutions which should satisfy the increasing demand for resource hungry applications. Since the computational power provided by single processing units seems to grow slower compared to the application needs, it is generally accepted that a suitable solution can be implemented using multi-core architectures which aim to provide a better balance between performance, power consumption, flexibility and scalability. In this paper we discuss the problem of scheduling and load balancing alternatives for virtualized run-time environments. Based on the virtualization concept, we summarize the most common approaches in scheduling techniques for embedded mobile communication systems. Considering the shortcomings of single core architectures for embedded mobile communication systems, a future architecture is presented, which has been proposed by the eMuCo project in the context of an European research project. Last but not least, we focus on a critical component in the future embedded system that aims to distribute and balance the load in order to ensure an optimal distribution of threads on the available cores and to eventually reduce power consumption. A variant of the architecture of the load balancer and its integration into the complete system is described.
机译:由于移动通信系统在过去十年中呈指数增长,因此已经在性能提高解决方案上投入了更多的精力,这些解决方案应能满足对资源匮乏应用的不断增长的需求。由于单个处理单元提供的计算能力似乎比应用程序需求增长慢,因此,人们普遍认为可以使用多核架构来实现合适的解决方案,该架构旨在在性能,功耗,灵活性和性能之间取得更好的平衡。可扩展性。在本文中,我们讨论了虚拟化运行时环境的调度和负载平衡替代方案的问题。基于虚拟化的概念,我们总结了嵌入式移动通信系统的调度技术中最常用的方法。考虑到嵌入式移动通信系统的单核体系结构的缺点,提出了一种未来的体系结构,该体系结构是eMuCo项目在欧洲研究项目的背景下提出的。最后但并非最不重要的一点是,我们专注于未来嵌入式系统中的一个关键组件,该组件旨在分配和平衡负载,以确保在可用内核上实现线程的最佳分配并最终降低功耗。描述了负载平衡器的体系结构的一种变体,并将其集成到整个系统中。

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