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A novel network architecture for train-to-wayside communication with quality of service over heterogeneous wireless networks

机译:一种用于异构无线网络上具有服务质量的列车到路边通信的新颖网络架构

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In the railway industry, there are nowadays different actors who would like to send or receive data from the wayside to an onboard device or vice versa. These actors are e.g., the Train Operation Company, the Train Constructing Company, a Content Provider, etc. This requires a communication module on each train and at the wayside. These modules interact with each other over heterogeneous wireless links. This system is referred to as the Train-to-Wayside Communication System (TWCS). While there are already a lot of deployments using a TWCS, the implementation of quality of service, performance enhancing proxies (PEP) and the network mobility functions have not yet been fully integrated in TWCS systems. Therefore, we propose a novel and modular IPv6-enabled TWCS architecture in this article. It jointly tackles these functions and considers their mutual dependencies and relationships. DiffServ is used to differentiate between service classes and priorities. Virtual local area networks are used to differentiate between different service level agreements. In the PEP, we propose to use a distributed TCP accelerator to optimize bandwidth usage. Concerning network mobility, we propose to use the SCTP protocol (with Dynamic Address Reconfiguration and PR-SCTP extensions) to create a tunnel per wireless link, in order to support the reliable transmission of data between the accelerators. We have analyzed different design choices, pinpointed the main implementation challenges and identified candidate solutions for the different modules in the TWCS system. As such, we present an elaborated framework that can be used for prototyping a fully featured TWCS.
机译:在铁路行业中,如今有不同的参与者想要从路边向车载设备发送或接收数据,反之亦然。这些参与者例如是火车运营公司,火车建设公司,内容提供商等。这需要在每辆火车上和在路边的通信模块。这些模块通过异构无线链路相互交互。该系统称为火车到路边通信系统(TWCS)。尽管已经有很多部署使用TWCS的部署,但是服务质量,性能增强代理(PEP)和网络移动性功能的实现尚未完全集成到TWCS系统中。因此,在本文中,我们提出了一种新颖且模块化的支持IPv6的TWCS体系结构。它共同处理这些功能,并考虑它们的相互依存关系。 DiffServ用于区分服务类别和优先级。虚拟局域网用于区分不同的服务级别协议。在PEP中,我们建议使用分布式TCP加速器来优化带宽使用。关于网络移动性,我们建议使用SCTP协议(具有动态地址重新配置和PR-SCTP扩展)在每个无线链路上创建隧道,以支持加速器之间的可靠数据传输。我们分析了不同的设计选择,指出了主要的实现挑战,并确定了TWCS系统中不同模块的候选解决方案。因此,我们提出了一个详细的框架,可用于对功能齐全的TWCS进行原型制作。

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