Stable emergent heterogeneous agent distributions in noisy environments

J. Finke, K. Passino
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引用次数: 8

Abstract

A mathematical model is introduced for the study of the behavior of a spatially distributed group of heterogenous agents which possess noisy assessments of the state of their immediate surroundings. We define general sensing and motion conditions on the agents that guarantee the emergence of a type of "ideal free distribution" (IFD) across the environment, and focus on how individual and environmental characteristics affect this distribution. In particular, we show the impact of the agents' maneuvering and sensing abilities for different classes of environments, and how spatial constraints of the environment affect the rate at which the distribution is achieved. Finally, we apply this model to a cooperative vehicle control problem and present simulation results that show the benefits of an IFD-based distributed decision-making strategy
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噪声环境下稳定涌现的异质智能体分布
介绍了一种数学模型,用于研究空间分布的异质智能体群的行为,这些异质智能体对其周围环境的状态具有噪声评估。我们定义了保证在整个环境中出现一种“理想自由分布”(IFD)的智能体的一般传感和运动条件,并关注个体和环境特征如何影响这种分布。特别是,我们展示了智能体的机动和感知能力对不同类型环境的影响,以及环境的空间约束如何影响实现分布的速度。最后,我们将该模型应用于一个协同车辆控制问题,并给出了仿真结果,显示了基于ifd的分布式决策策略的优势
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