评估低功耗无线网络物理系统

Dominik Baumann, Fabian Mager, Harsoveet Singh, Marco Zimmerling, Sebastian Trimpe
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引用次数: 17

摘要

已经提出了仿真工具和测试平台来单独评估控制设计和无线协议的性能。然而,网络物理系统(CPS)将控制与网络元素集成在一起,必须在实际条件下对其进行评估,以评估控制性能、稳定性和相关成本。我们提出了一种基于嵌入式设备和低功耗无线技术评估CPS的方法。使用一个或多个倒立摆作为物理系统,我们的方法支持一系列对控制和网络元素施加不同要求的现实CPS场景。此外,我们的方法允许灵活地将模拟钟摆和真实钟摆结合起来,促进采用、可扩展性、可重复性以及与现有无线测试平台基础设施的集成。案例研究演示了使用建议的评估方法的实现、执行和度量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluating Low-Power Wireless Cyber-Physical Systems
Simulation tools and testbeds have been proposed to assess the performance of control designs and wireless protocols in isolation. A cyber-physical system (CPS), however, integrates control with network elements, which must be evaluated together under real-world conditions to assess control performance, stability, and associated costs. We present an approach to evaluate CPS relying on embedded devices and low-power wireless technology. Using one or multiple inverted pendulums as physical system, our approach supports a spectrum of realistic CPS scenarios that impose different requirements onto the control and networking elements. Moreover, our approach allows one to flexibly combine simulated and real pendulums, promoting adoption, scalability, repeatability, and integration with existing wireless testbed infrastructures. A case study demonstrates implementation, execution, and measurements using the proposed evaluation approach.
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