Kinsler Paul, Holman Sean, Elliott Andrew, Mitchell Cathryn N, Wilson R Eddie
Department of Electronic & Electrical Engineering University of Bath, Bath, United Kingdom.
Department of Mathematics, University of Manchester, Manchester, United Kingdom.
PLoS One. 2024 Dec 11;19(12):e0311513. doi: 10.1371/journal.pone.0311513. eCollection 2024.
Here we consider the communications tactics appropriate for a group of agents that need to "swarm" together in a challenging communications environment. Swarms are increasingly important in a number of applications, including land, air, sea and space exploration, and their constituent agents could be satellites, drones, or other autonomous vehicles. A particularly difficult problem is to autonomously connect a swarm of agents together in a situation where stringent communication constraints are present, whether due to a need for stealth, restricted on-board power, external requirements to avoid certain broadcast directions, or equipment & hardware limitations. Here we present a novel, discrete, geometry-free model applicable to multi-agent swarm communications where a group of agents need to connect together and where the constraints on the communications dominate the algorithmic outcomes. No global knowledge of the agent locations is held and hence our framework proposes agent-centric performance metrics. We demonstrate our model using a set of candidate connectivity tactics and we show how simulated outcome distributions, risks and connectivity depend on the ratio of information gain to information loss. We also show that checking for excessive round-trip-times can be an effective minimal-information filter for determining which agents to no longer target with messages. The framework and algorithms that are presented here have wider application in testing efficient communication tactics across agent swarms in designated scenarios and testing the connectivity outcomes for future systems and missions.
在此,我们考虑适用于一群需要在具有挑战性的通信环境中“集群”的智能体的通信策略。集群在包括陆地、空中、海洋和太空探索在内的许多应用中变得越来越重要,其组成智能体可以是卫星、无人机或其他自主车辆。一个特别困难的问题是,在存在严格通信限制的情况下,无论是由于需要隐身、机载功率受限、避免某些广播方向的外部要求,还是设备和硬件限制,如何自主地将一群智能体连接在一起。在此,我们提出一种适用于多智能体集群通信的新颖、离散、无几何模型,其中一群智能体需要连接在一起,且通信限制主导算法结果。不掌握智能体位置的全局信息,因此我们的框架提出以智能体为中心的性能指标。我们使用一组候选连接策略来演示我们的模型,并展示模拟结果分布、风险和连接性如何取决于信息增益与信息损失的比率。我们还表明,检查过多的往返时间可以作为一种有效的最小信息过滤器,用于确定不再向哪些智能体发送消息。本文提出的框架和算法在测试指定场景中跨智能体集群的高效通信策略以及测试未来系统和任务的连接性结果方面具有更广泛的应用。