Multi-agent control is a central theme in the Cyber-Physical Systems (CPS). However, current control methods either receive non-Markovian states due to insufficient sensing and decentralized design, or suffer from poor convergence. This paper presents the Delayed Propagation Transformer (DePT), a new transformer-based model that specializes in the global modeling of CPS while taking into account the immutable constraints from the physical world. DePT induces a cone-shaped spatial-temporal attention prior, which injects the information propagation and aggregation principles and enables a global view. With physical constraint inductive bias baked into its design, our DePT is ready to plug and play for a broad class of multi-agent systems. The experimental results on one of the most challenging CPS -- network-scale traffic signal control system in the open world -- show that our model outperformed the state-of-the-art expert methods on synthetic and real-world datasets. Our codes are released at: https://github.com/VITA-Group/DePT.
翻译:多试剂控制是网络物理系统(Cyber-physic Systems)的一个中心主题。然而,目前的控制方法要么由于遥感和分散设计不足而获得非马尔科维尼亚国家,要么由于交汇性差而受到影响。本文件介绍了延迟推进变异器(DePT),这是一个新的变异器模型,专门用于CPS的全球模型,同时考虑到来自物理世界的无法改变的限制。DePT在输入信息传播和汇总原则并促成全球视野之前,引发了同形的空间时钟关注。在设计过程中,我们Dept 准备为广泛类别的多试剂系统插入和玩耍。一个最具挑战性的CPS -- -- 网络规模交通信号控制系统在开放世界中的实验结果显示,我们的模型在合成和现实世界数据集方面超越了最先进的专家方法。我们的代码发布在https://github.com/VITA-Group/DePT。