Rational communicative behavior in anti-air defense

Sanguk Noh, P. Gmytrasiewicz
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引用次数: 10

Abstract

The authors' research addresses rational decision-making among anti-air units whose mission is to defend a specified territory from a number of attacking missiles. They present a decision-theoretic method that automated agents can use to select optimal communicative acts in this domain, given the characteristics of the threat situation. Since the communication bandwidth is usually limited in a battle field environment and disclosure of any information to hostile agents should be avoided, it is critical for a defending agent to be selective as to what messages should, or should not, be sent to other friendly agents. The work builds on their earlier work that uses the recursive modeling method (RMM) for coordination, and applies RMM to rational communication in the anti-air defense domain. They show how a defending automated agent can rank the values of alternative messages that could be communicated in a given defense situation. Further, they compare this ranking to communicative choices of human subjects under the same circumstances of the coordinated anti-air defense.
防空中的理性交往行为
作者的研究解决了防空部队之间的理性决策问题,防空部队的任务是保护特定领土免受大量攻击导弹的攻击。他们提出了一种决策理论方法,自动代理可以使用该方法在给定威胁情况的特征下选择该领域的最佳通信行为。由于通信带宽通常在战场环境中是有限的,并且应该避免向敌对代理泄露任何信息,因此对于防御代理来说,选择哪些信息应该或不应该发送给其他友好代理是至关重要的。这项工作建立在他们早期使用递归建模方法(RMM)进行协调的工作的基础上,并将RMM应用于防空领域的合理通信。它们展示了防御自动化代理如何对在给定防御情况下可以通信的备选消息的值进行排序。此外,他们将这一排名与人类主体在协同防空的相同情况下的交流选择进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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