Online message delay prediction for model predictive control over controller area network

A. Rao, Haibo Zeng
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引用次数: 1

Abstract

Today's Cyber-Physical Systems (CPS) are typically distributed over several computing nodes communicated through buses such as Controller Area Network (CAN). Their control performance gets degraded due to variable delays incurred by messages on the shared CAN bus. This paper presents a novel online delay prediction method that predicts the message delay at runtime based on real-time traffic information on CAN. It leverages the proposed method to improve control quality, by compensating the message delay in the Model Predictive Control (MPC) algorithm design. It demonstrates that the delay prediction is accurate, and the MPC design which takes the message delay into consideration performs considerably better. It also implements the proposed method on an 8-bit 16MHz ATmega328P microcontroller and measures the execution time overhead. The results clearly indicate that the method is computationally feasible for online usage.
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控制器局域网模型预测控制的在线消息延迟预测
当今的信息物理系统(CPS)通常分布在通过总线(如控制器局域网(CAN))通信的多个计算节点上。由于共享CAN总线上的消息引起的可变延迟,它们的控制性能下降。本文提出了一种基于CAN实时流量信息的在线延迟预测方法。该方法通过补偿模型预测控制(MPC)算法设计中的消息延迟来提高控制质量。实验结果表明,延迟预测是准确的,考虑了消息延迟的MPC设计效果要好得多。并在8位16MHz ATmega328P微控制器上实现了该方法,并测量了执行时间开销。结果表明,该方法在计算上是可行的。
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