Communication is an important capability for multi-robot exploration because (1) inter-robot communication (comms) improves coverage efficiency and (2) robot-to-base comms improves situational awareness. Exploring comms-restricted (e.g., subterranean) environments requires a multi-robot system to tolerate and anticipate intermittent connectivity, and to carefully consider comms requirements, otherwise mission-critical data may be lost. In this paper, we describe and analyze ACHORD (Autonomous & Collaborative High-Bandwidth Operations with Radio Droppables), a multi-layer networking solution which tightly co-designs the network architecture and high-level decision-making for improved comms. ACHORD provides bandwidth prioritization and timely and reliable data transfer despite intermittent connectivity. Furthermore, it exposes low-layer networking metrics to the application layer to enable robots to autonomously monitor, map, and extend the network via droppable radios, as well as restore connectivity to improve collaborative exploration. We evaluate our solution with respect to the comms performance in several challenging underground environments including the DARPA SubT Finals competition environment. Our findings support the use of data stratification and flow control to improve bandwidth-usage.
翻译:由于(1) 机器人间通信(comms)提高了覆盖效率,(2) 机器人对基地通信的多层联网解决方案,密切地共同设计网络架构和高层决策以改善通信,探索限制通信(例如地下)环境需要多层机器人系统,以容忍和预测间歇连接,并认真考虑通信要求,否则可能会丢失任务关键数据。在本文件中,我们描述和分析ACHORD(自动和协作高频降压操作),这是一种多层联网解决方案,该解决方案为改进通信而密切地共同设计网络架构和高层决策。ACHORD提供带宽优先安排以及及时可靠的数据传输,尽管连接时断时断时断时续。此外,它向应用层暴露低层的低层联网指标,以使机器人能够自动监测、测绘和通过可下载的无线电扩展网络,以及恢复连通性以增进合作探索。我们评估了在包括DARPA最终数据控制系统在内的若干具有挑战性的地下环境中的通信绩效,支持SRPA-DRPA最终数据利用数据管理环境。