Control-Aware Random Access Communication

Konstantinos Gatsis, Alejandro Ribeiro, George J. Pappas
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引用次数: 31

Abstract

In modern control applications multiple wireless sensors need to efficiently share the available wireless medium to communicate with their respective actuators. Random access policies, where each sensor independently decides whether to access the shared wireless medium, are attractive as they do not require central coordination. However interference between simultaneous transmissions causes transmitted packets to collide, leading to control performance degradation or potentially instability. Given plant and controller dynamics, we derive a sufficient condition for the access policy employed by each sensor so that wireless interference does not violate stability of any involved control loop. Based on this decoupling condition we design random access communication policies that are control-aware by adapting to the physical plant states measured by the sensors online. The control performance of our design is illustrated in numerical simulations.
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控制感知随机存取通信
在现代控制应用中,多个无线传感器需要有效地共享可用的无线介质,以便与各自的执行器进行通信。随机访问策略,其中每个传感器独立决定是否访问共享无线媒体,是有吸引力的,因为它们不需要中央协调。但是,同时传输之间的干扰会导致传输的数据包发生碰撞,从而导致控制性能下降或潜在的不稳定。在给定对象和控制器的动态情况下,我们推导了每个传感器所采用的访问策略的充分条件,使无线干扰不破坏任何相关控制回路的稳定性。基于这种解耦条件,我们通过适应传感器在线测量的物理设备状态,设计了具有控制感知的随机访问通信策略。数值仿真表明了我们设计的控制性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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ICCPS '21: ACM/IEEE 12th International Conference on Cyber-Physical Systems, Nashville, Tennessee, USA, May 19-21, 2021 Demo Abstract: SURE: An Experimentation and Evaluation Testbed for CPS Security and Resilience Poster Abstract: Thermal Side-Channel Forensics in Additive Manufacturing Systems Exploiting Wireless Channel Randomness to Generate Keys for Automotive Cyber-Physical System Security WiP Abstract: Platform for Designing and Managing Resilient and Extensible CPS
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