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首页> 外文期刊>IEEE transactions on mobile computing >A Robust Load Balancing and Routing Protocol for Intra-Car Hybrid Wired/Wireless Networks
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A Robust Load Balancing and Routing Protocol for Intra-Car Hybrid Wired/Wireless Networks

机译:车内混合有线/无线网络的鲁棒负载平衡和路由协议

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摘要

With the emergence of connected and autonomous vehicles, sensors are increasingly deployed within cars to support new functionalities. Traffic generated by these sensors congest traditional intra-car networks, such as CAN buses. Furthermore, the large amount of wires needed to connect sensors makes it harder to design cars in a modular way. To alleviate these limitations, we propose, simulate, and implement a hybrid wired/wireless architecture, in which each node is connected to either a wired interface or a wireless interface or both. Specifically, we propose a new protocol, called Hybrid-Backpressure Collection Protocol (Hybrid-BCP), to efficiently collect data from sensors in intra-car networks. Hybrid-BCP is backward-compatible with the CAN bus technology, and builds on the BCP protocol, designed for wireless sensor networks. We theoretically prove that an idealized version of Hybrid-BCP achieves optimal throughput. Our testbed implementation, based on CAN and ZigBee transceivers, demonstrates the load balancing and routing functionalities of Hybrid-BCP and its resilience to DoS attacks and wireless jamming attacks. We further provide simulation results, obtained with the ns-3 simulator and based on real intra-car RSSI traces, that compare between the performance of Hybrid-BCP and a tree-based data collection protocol. Notably, the simulations show that Hybrid-BCP outperforms the tree-based protocol on throughput by 12 percent. The results also show that Hybrid-BCP maintains high packet delivery rate and low packet delay for safety-critical sensors that are directly connected to the sink through wire.
机译:随着联网和自动驾驶汽车的出现,传感器越来越多地部署在汽车内以支持新功能。这些传感器产生的流量使传统的车内网络(例如CAN总线)拥塞。此外,连接传感器所需的大量电线使模块化设计汽车变得更加困难。为了减轻这些限制,我们提出,模拟和实现混合有线/无线架构,其中每个节点都连接到有线接口或无线接口或两者。具体来说,我们提出了一种称为混合背压收集协议(Hybrid-BCP)的新协议,以有效地从车内网络中的传感器收集数据。 Hybrid-BCP与CAN总线技术向后兼容,并基于为无线传感器网络设计的BCP协议建立。我们从理论上证明了Hybrid-BCP的理想版本可以实现最佳吞吐量。我们基于CAN和ZigBee收发器的测试平台实现,展示了Hybrid-BCP的负载平衡和路由功能以及其对DoS攻击和无线干扰攻击的恢复能力。我们还提供了基于ns-3仿真器并基于真实车内RSSI跟踪获得的仿真结果,该结果在Hybrid-BCP的性能和基于树的数据收集协议之间进行了比较。值得注意的是,仿真显示,Hybrid-BCP在吞吐量方面优于基于树的协议12%。结果还表明,对于通过电线直接连接到接收器的安全关键型传感器,Hybrid-BCP保持较高的数据包传送速率和较低的数据包延迟。

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