论文标题
通过无线干涉法基于精确时间同步的信息传输
Information transfer based on precision time synchronization via wireless interferometry
论文作者
论文摘要
在信息和通信技术(例如数据中心和车载网络)中,高带宽和低延迟信息传输的需求不断增长,近年来已经提高了光学通信网络的重要性。但是,复杂的仲裁方案可以在数据传输中施加明显的开销,这可能会抑制光学互连电位的全部开发。在此,我们提出了一个基于通过无线双向干涉法(Wi-Wi)精确时间同步的仲裁协议,并在数值上验证其效率,包括对数据传输延迟的严格上限的能力。与传统的载体感知多重访问/碰撞检测(CSMA/CD)的方法相比,尤其是在流量较高的情况下,数据传输的显着改善。此外,我们在两个电连接节点之间进行了基于Wi-Wi的数据传输的原则实验,并确认偏斜小于300 ns,并且随着时间的推移保持稳定。相反,基于非WIWI的数据传输表现出巨大且不稳定的偏斜。这些结果表明,精确时间同步是一种有希望的资源,可以显着减少通信开销,并确保未来网络和实时应用程序的潜伏期较低。
The growing demand of high-bandwidth and low-latency information transfer in information and communication technologies such as data centres and in-vehicle networks has increased the importance of optical communication networks in recent years. However, complicated arbitration schemes can impose significant overheads in data transfer, which may inhibit the full exploitation of the potential of optical interconnects. Herein, we propose an arbitration protocol based on precision time synchronization via wireless two-way interferometry (Wi-Wi), and numerically validate its efficiency including the ability to impose a strict upper bound on the latency of data transfer. Compared with the conventional carrier sense multiple access/collision detection (CSMA/CD)-based approach, a significant improvement in the data transfer was observed especially in the cases with high traffic flow rate. Furthermore, we conducted a proof-of-principle experiment for Wi-Wi-based data transfer between two electrically connected nodes and confirmed that the skew was less than 300 ns and remained stable over time. Conversely, non-WiWi-based data transfer exhibited huge and unstable skew. These results indicate that precision time synchronization is a promising resource to significantly reduce the communication overheads and ensure low latency for future networks and real-time applications.