Lune

INFOCOM2026顶会

Optimal Swarm Ranging Protocol for Dynamic and Dense Ultra-Wideband Networks

Yunxi Hou, Feng Shan, Wangxiao Mao, Jiangpeng Liu, Ye Liu, Wenjia Wu, Runqun Xiong, Junzhou Luo

2026年份
2被引次数

摘要

Nowadays, as mobile robots and devices become smaller and lighter, forming them into swarms to collaboratively complete tasks has become an important research area. The previously introduced Ultra-Wideband (UWB) Swarm Ranging (SRv1) protocol pioneered simultaneous data transmission and ranging. However, it suffers from performance degradation in large-scale robot or device swarms.This paper introduces Swarm Ranging 2.0, a fundamentally redesigned and theoretically optimal protocol, which pushes the DS-TWR method to its theoretical limit, maximizing the number of distance calculations. Firstly, we propose a novel compensatory ranging method, enabling additional ranging for dynamic swarms. Next, we analyze the primary packet loss scenarios and redesign the ranging message and ranging table (data structure) to achieve robust ranging. Subsequently, to cope with complex combinations of packet loss and inconsistent frequency, we model the new protocol using a state machine. Theoretical analysis further proves its optimality. We implement the protocol on Crazyflie 2.1 drones equipped with DW3000 UWB transceivers. Experiments with 25 drones show a 47.8% improvement over SRv1 and over 300% improvement compared to standard UWB protocol, demonstrating the protocol’s scalability and effectiveness in real-world swarm deployments. The protocol is open-sourced at https://github.com/SEU-NetSI/crazyflie-firmware.

问问这篇 Paper

问问你的智能体。

Lune 读过与它相关的顶会 Paper,每个回答都会注明依据哪几篇。

可以从这些问题问起

智能体调用

Lunesearch_papers

在 Lune 里问

免费开始,无需绑卡

相关 Paper

黄昏的海面,两侧是细线勾勒的悬崖