Design of TSN-based Ethernet Driver Working Model for Time-aware Scheduling

Bowen Wang, Feng Luo, Yutao Jin, Zihao Fang, Qiujian Li
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引用次数: 1

Abstract

With the rapid increase in the proportion of electronic products used in automobiles, the scale and complexity of in-car systems are increasing day by day. The requirements for automobile safety, energy conservation, emission reduction, and comfort are also growing. Under such a development trend, the bandwidth demand of the onboard network is also increasing. It demands that the onboard network can carry various high-speed data transmissions. To overcome this problem, automotive Ethernet becomes one of the best solutions in such a trend by establishing communication links between related ECUs, allowing ECUs to use more advanced functions and share data. Meanwhile, Time Sensitive Network (TSN) is dedicated to developing more powerful functions to realize an ultra-low delay control network. Time synchronization and time-aware scheduling are the core of TSN protocol. In this paper, we propose a new architecture of the TSN-based Ethernet driver working model for time-aware scheduling to improve the performance of the deterministic delays of the time-sensitive stream. TSN only guarantees the communication delay but does not make requirements for the controllers. To support the real-time scheduling mechanism of TSN, the Ethernet controller's working model must change. Due to the more considerable amount of data to be processed, the driver's occupation management of the controller's running resources becomes more critical. At the same time, due to the need for real-time scheduling, the message sending behavior is constrained, and it cannot run in the event-based triggering mode like traditional Ethernet drivers. We also implement our architecture on an embedded system and evaluate the performance of the time-aware scheduling based on our architecture.
基于tsn的时间感知调度的以太网驱动工作模型设计
随着电子产品在汽车中所占比例的迅速增加,车载系统的规模和复杂程度日益提高。人们对汽车安全、节能减排、舒适性的要求也越来越高。在这样的发展趋势下,板载网络的带宽需求也越来越大。它要求板载网络能够承载各种高速数据传输。为了克服这一问题,汽车以太网通过在相关ecu之间建立通信链路,使ecu能够使用更先进的功能并共享数据,成为这一趋势中的最佳解决方案之一。同时,时间敏感网络(TSN)致力于开发更强大的功能来实现超低延迟控制网络。时间同步和时间感知调度是TSN协议的核心。本文提出了一种基于tsn的以太网驱动工作模型的新架构,用于时间感知调度,以提高时间敏感流的确定性延迟性能。TSN只保证通信时延,对控制器没有要求。为了支持TSN的实时调度机制,以太网控制器的工作模式必须改变。由于需要处理的数据量越来越大,驱动程序对控制器运行资源的占用管理变得更加关键。同时,由于实时调度的需要,消息发送行为受到约束,不能像传统的以太网驱动那样以基于事件的触发方式运行。我们还在嵌入式系统上实现了我们的体系结构,并基于我们的体系结构评估了时间感知调度的性能。
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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