首页> 外文期刊>The Journal of Systems and Software >ProMARTES: Accurate network and computation delay prediction for component-based distributed systems
【24h】

ProMARTES: Accurate network and computation delay prediction for component-based distributed systems

机译:ProMARTES:基于组件的分布式系统的准确网络和计算延迟预测

获取原文
获取原文并翻译 | 示例
           

摘要

This paper proposes a cycle-accurate performance analysis method for real-time component-based distributed systems (CB-RTDS). The method involves the following phases: (a) profiling SW components at cycle execution level and modeling the obtained performance measurements in MARTE-compatible component resource models, (b) guided composition of the system architecture from available SW and HW components, (c) automated generation of a system model, specifying both computation and network loads, and (d) performance analysis (scheduling, simulation and network analysis) of the composed system model. The method is demonstrated for a real-world case study of 3 autonomously navigating robots with advanced sensing capabilities. The case study is challenging because of the SW/HW mapping, realtime requirements and data synchronization among multiple nodes. This case-study proved that, thanks to the adopted low-level performance metrics, we are able to obtain accurate performance predictions of both computation and network delays. Moreover, the combination of analytical and simulation analysis methods enables the computation of both the guaranteed Worst Case Execution Time (WCET) and the detailed execution time-line data for real-time tasks. As a result, the analysis yields the identification of an optimal architecture, with respect to real-time deadlines, robustness and system costs. The paper main contributions are the cycle-accurate performance analysis workflow and supportive open-source ProMARTES tool-chain, both incorporating a network prediction model in all the performance analysis phases.
机译:本文提出了一种实时的基于组件的实时分布式系统(CB-RTDS)的精确周期性能分析方法。该方法涉及以下阶段:(a)在周期执行级别对SW组件进行性能分析,并在与MARTE兼容的组件资源模型中对获得的性能度量进行建模;(b)从可用的SW和HW组件中指导系统架构的组成;(c)自动生成系统模型,同时指定计算和网络负载,以及(d)组成的系统模型的性能分析(计划,仿真和网络分析)。该方法在3个具有先进传感功能的自主导航机器人的真实案例研究中得到了证明。由于SW / HW映射,实时需求以及多个节点之间的数据同步,该案例研究具有挑战性。这项案例研究证明,由于采用了低级性能指标,我们能够获得有关计算和网络延迟的准确性能预测。此外,分析和模拟分析方法的结合使得能够为实时任务计算保证的最坏情况执行时间(WCET)和详细的执行时间线数据。结果,分析得出了关于实时期限,健壮性和系统成本的最佳架构的标识。本文的主要贡献在于精确的周期性能分析工作流和支持性开源ProMARTES工具链,它们在所有性能分析阶段都包含了网络预测模型。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号