论文标题

tsn-flextest:灵活的TSN测量测试床(扩展版)

TSN-FlexTest: Flexible TSN Measurement Testbed (Extended Version)

论文作者

Ulbricht, Marian, Senk, Stefan, Nazari, Hosein K., Liu, How-Hang, Reisslein, Martin, Nguyen, Giang T., Fitzek, Frank H. P.

论文摘要

强大,可靠和确定性网络对于各种应用程序至关重要。为了提供保证的通信网络服务,时间敏感的网络(TSN)将一组标准组合起来,用于时间同步,流量控制,增强的可靠性和管理。我们使用通用商品硬件和开源软件组件设计TSN-Flextest测试床,以实现灵活的TSN测量。我们进行了广泛的测量,以验证TSN-Flextest测试床并检查TSN特性。测量结果提供了有关TSN配置影响的见解,例如增加精确时间协议的同步消息的数量,表明可以实现15 ns的测量精度。 TSN测量值包括对触觉互联网(TI)数据包流量流的时光塑形器(TAS)的广泛评估。测量结果阐明了不同的调度和塑造方法的效果,同时揭示了对整个网络控制的需求,从而使发送节点与网络交换机同步。我们在商品硬件测试台上使用同步发件人进行了对分布式TA的第一个测量,尽管过度过饱和交通量过高,但与专用电线相同的服务质量与专用电线相同。提供测试床是一个开源项目,以促进未来的TSN研究。

Robust, reliable, and deterministic networks are essential for a variety of applications. In order to provide guaranteed communication network services, Time-Sensitive Networking (TSN) unites a set of standards for time-synchronization, flow control, enhanced reliability, and management. We design the TSN-FlexTest testbed with generic commodity hardware and open-source software components to enable flexible TSN measurements. We have conducted extensive measurements to validate the TSN-FlexTest testbed and to examine TSN characteristics. The measurements provide insights into the effects of TSN configurations, such as increasing the number of synchronization messages for the Precision Time Protocol, indicating that a measurement accuracy of 15 ns can be achieved. The TSN measurements included extensive evaluations of the Time-aware Shaper (TAS) for sets of Tactile Internet (TI) packet traffic streams. The measurements elucidate the effects of different scheduling and shaping approaches, while revealing the need for pervasive network control that synchronizes the sending nodes with the network switches. We present the first measurements of distributed TAS with synchronized senders on a commodity hardware testbed, demonstrating the same Quality-of-Service as with dedicated wires for high-priority TI streams despite a 200% over-saturation cross traffic load. The testbed is provided as an open-source project to facilitate future TSN research.

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