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ACQUA: Adaptive and cooperative quality-aware control for automotive cyber-physical systems

机译:ACQUA:汽车网络物理系统的自适应和协作质量感知控制

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Controllers in cyber-physical systems integrate a design-time behavioral model of the system under design to improve their own quality. In the state-of-the-art control designs, behavioral models of other interacting neighbor systems are also integrated to form a centralized behavioral model and to enable a system-level optimization and control. Although this ideal embedded control design may result in pareto-optimal solutions, it is not scalable to larger number of systems. Moreover, the behavior of the multi-domain physical systems may be too complex for a control designer to model and may dynamically change at run time. In this paper, we propose a novel Adaptive and Cooperative Quality-Aware (ACQUA) control design which addresses these challenges. In this control design, an ACQUA-based controller for the system under design will monitor the quality of the neighbor systems to dynamically learn their behavior. Therefore, it can quickly adapt its control to cooperate with other neighbor controllers for improving the quality of not only itself, but also other neighbor systems. We apply ACQUA to design a cooperative controller for automotive navigation system, motor control unit, and battery management system in an electric vehicle. We use this automotive example to analyze the performance of the design. We show that by using our ACQUA control, we can reach up to 86% improvements achievable by an ideal embedded control design such that energy consumption reduces by 18% and battery capacity loss decreases by 12% compared to the state-of-the-art on average.
机译:网络物理系统中的控制器集成了正在设计中的系统的设计时行为模型,以提高其自身的质量。在最新的控制设计中,还集成了其他交互邻居系统的行为模型,以形成集中的行为模型并实现系统级的优化和控制。尽管这种理想的嵌入式控制设计可能会带来最佳的解决方案,但它无法扩展到更多的系统。而且,多域物理系统的行为对于控制设计者而言可能太复杂而无法建模,并且可能在运行时动态变化。在本文中,我们提出了一种新颖的自适应和协作质量感知(ACQUA)控制设计,以应对这些挑战。在此控制设计中,正在设计中的系统的基于ACQUA的控制器将监视相邻系统的质量,以动态了解其行为。因此,它可以快速调整其控制以与其他邻居控制器配合使用,从而不仅提高自身质量,而且还提高其他邻居系统的质量。我们将ACQUA应用于为电动汽车的汽车导航系统,电机控制单元和电池管理系统设计协作控制器。我们使用这个汽车示例来分析设计的性能。我们证明,通过使用ACQUA控件,与理想的嵌入式控件设计相比,我们可以达到高达86%的改进,与传统的状态相比,能耗降低了18%,电池容量损失降低了12%。平均而言是最先进的。

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