网格型交通灯网络可靠通信系统的设计

Junghoon Lee, Song Han, A. Mok
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引用次数: 13

摘要

本文设计并分析了一种基于无线过程控制协议的交通控制系统可靠通信方案的性能,旨在提高安全关键型控制应用的鲁棒性和时效性。该方案利用基于时隙的可预测访问和城市道路网络的网格拓扑结构,建立了从控制器到每个节点的一条主从路由,并据此分配时隙。这可以通过拆分合并操作来实现,该操作使发送方节点感知主通道(到主接收方的通道),并仅在第一个通道在单个插槽中没有空闲时才使用辅助通道,同时使接收方首先侦听主发送方并切换到辅助发送方。该方案通过将分割合并操作建模为单个虚链路,并应用最短路径算法,找到错误率最低的路径。实验结果表明,该方案极大地提高了网格型交通控制网络的传输成功率,并且随着网络规模的增大,传输成功率呈递增趋势。此外,与传统的网格路由方案相比,该路由方案还能进一步找到提高控制消息投递率的路径。
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Design of a Reliable Communication System for Grid-Style Traffic Light Networks
This paper presents the design and analyzes the performance of a reliable communication scheme for the traffic control system built upon a wireless process control protocol, aiming at enhancing the robustness and timeliness of the safety-critical control applications. By exploiting the slot-based predictable access and the grid topology of urban area road networks, the proposed scheme establishes one primary and secondary route from the controller to each node and allocates the time slots accordingly. This is facilitated by a split-merge operation that makes a sender node sense the primary channel(channel to the primary receiver) and take the secondary channel only if the first one is not free in a single slot, while making the receiver first listen to the primary sender and switch to the secondary sender. Our scheme also finds the path with the lowest error rate by modeling the split-merge operation as a single virtual link and applying shortest path algorithm. The experimental results show that the proposed scheme greatly enhances the transmission success ratio for the grid-style traffic control network and the improvement scales up with the network size. In addition, the routing scheme can further find the path that can improve the delivery ratio of control messages compared with the traditional grid routing scheme.
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