Clock Synchronization in Context of the Distributed Co-Simulation Protocol

M. Krammer, Philipp Ferner, D. Watzenig
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引用次数: 3

Abstract

Today co-simulation methodologies are widely used for automotive system development. This approach supports distributed development and test of subsystems, which are engineered by different suppliers. The Functional Mock-Up Interface (FMI) as an open standard enables seamless integration of simulation models, tools and solvers. The recently published Distributed Co-Simulation Protocol (DCP) is an open standard application layer communication protocol. It represents a solution for the integration of models or real-time systems into simulation environments. While the DCP was designed for low overhead and realtime capable operation, it does not specify the exchange of time information during simulation. The DCP currently relies on external mechanisms for time synchronization. In this paper, we propose an extension to the DCP, enabling time synchronization between DCP slaves and the master. This enables time triggered exchange of simulation data, applicable to the DCP's real-time and non-real-time operating modes. Therefore it becomes possible to synchronize time between participants of a distributed co-simulation scenario. Many applications may benefit from our approach, including hardware- or software-in-the-loop scenarios, or mixed real-virtual prototypes for e.g. automated driving. We demonstrate the functionality of our extension with a use case from the automotive domain, which implements a lane keeping assist system.
分布式协同仿真协议下的时钟同步
目前,联合仿真方法已广泛应用于汽车系统开发。这种方法支持由不同供应商设计的子系统的分布式开发和测试。功能模拟接口(FMI)作为一个开放标准,可以实现仿真模型、工具和求解器的无缝集成。最近发布的分布式联合仿真协议(DCP)是一个开放的标准应用层通信协议。它代表了一种将模型或实时系统集成到仿真环境中的解决方案。虽然DCP是为低开销和实时操作而设计的,但它没有指定在仿真期间交换时间信息。DCP目前依赖于外部机制进行时间同步。在本文中,我们提出了一个扩展DCP,使DCP从机和主机之间的时间同步。这使得时间触发的模拟数据交换,适用于DCP的实时和非实时操作模式。因此,在分布式联合仿真场景的参与者之间同步时间成为可能。许多应用程序可能会从我们的方法中受益,包括硬件或软件在环场景,或混合真实-虚拟原型,例如自动驾驶。我们用一个来自汽车领域的用例来演示扩展的功能,该用例实现了车道保持辅助系统。
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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