论文标题

确定性车内通信:时机和同步

Deterministic Intra-Vehicle Communications: Timing and Synchronization

论文作者

Gharavi, Hamid, Hu, Bin

论文摘要

随着我们通往未来的力量,车载通信依赖对速度的依赖正在成为一个具有挑战性的困境。这主要是由于数量不断增加的电子控制单元(ECU),该单元将继续耗尽网络容量,从而进一步增加带宽需求。对于有线网络,带宽要求,可靠性和成本效益之间的权衡是我们开发基于两个时间触发协议的集成的高速网络体系结构的主要动机。时间触发以太网(TT-E)和时间触发控制器区域网络(TT-CAN)。因此,作为车辆互联网技术的可见示例,我们提出了一个触发基于通信的网络体系结构的时间。新的体系结构可以提供高级功能的可扩展集成,同时保持安全性和高度可靠性。为了符合带宽要求,我们将高速TT-Ethernet视为主要总线(即骨干网络),子网络可以使用更具成本效益和较低的带宽TT-CAN来通过网关与网络中的其他实体进行通信。提出的网络体系结构中的主要挑战是解决两个完全不同的时间触发协议之间的互操作性,尤其是在时间和同步方面。在本文中,我们首先探讨了所提出的体系结构的主要主要驱动力,即带宽,可靠性和及时性。然后,我们演示了网关设计在两个时间触发的协议之间提供完整互操作性方面的有效性。

As we power through to the future, in-vehicle communications reliance on speed is becoming a challenging predicament. This is mainly due to the ever-increasing number of electronic control units (ECUs), which will continue to drain network capacity, hence further increasing bandwidth demand. For a wired network, a tradeoff between bandwidth requirement, reliability, and cost-effectiveness has been our main motivation in developing a high-speed network architecture that is based on the integration of two time-triggered protocols namely; Time Triggered Ethernet (TT-E) and Time Triggered Controller Area Network (TT-CAN). Therefore, as a visible example of an Internet of Vehicles technology, we present a time triggered communication-based network architecture. The new architecture can provide scalable integration of advanced functionalities, while maintaining safety and high reliability. To comply with the bandwidth requirement, we consider high-speed TT-Ethernet as the main bus (i.e., backbone network) where sub-networks can use more cost-effective and lower bandwidth TT-CAN to communicate with other entities in the network via a gateway. The main challenge in the proposed network architecture has been to resolve interoperability between two entirely different time-triggered protocols, especially in terms of timing and synchronization. In this paper, we first explore the main key drivers of the proposed architecture, which are bandwidth, reliability, and timeliness. We then demonstrate the effectiveness of our gateway design in providing full interoperability between the two time-triggered protocols.

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