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Reasoning about commitments in the event calculus: An approach for specifying and executing protocols

机译:关于事件演算中的承诺的推理:一种指定和执行协议的方法

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Commitments among agents are widely recognized as an important basis for organizing interactions in multiagent systems. We develop an approach for formally representing and reasoning about commitments in the event calculus. We apply and evaluate this approach in the context of protocols, which represent the interactions allowed among communicating agents. Protocols are essential in applications such as electronic commerce where it is necessary to constrain the behaviors of autonomous agents. Traditional approaches, which model protocols merely in terms of action sequences, limit the flexibility of the agents in executing the protocols. By contrast, by formally representing commitments, we can specify the content of the protocols through the agents' commitments to one another. In representing commitments in the event calculus, we formalize commitment operations and domain-independent reasoning rules as axioms to capture the evolution of commitments. We also provide a means to specify protocol-specific axioms through the agents' actions. These axioms enable agents to reason about their actions explicitly to flexibly accommodate the exceptions and opportunities that may arise at run time. This reasoning is implemented using an event calculus planner that helps determine flexible execution paths that respect the given protocol specifications.
机译:代理之间的承诺被广泛认为是组织多代理系统中的交互的重要基础。我们开发了一种用于在事件演算中正式表示和推理承诺的方法。我们在协议的上下文中应用和评估此方法,该协议表示通信代理之间允许的交互。协议对于诸如电子商务这样的应用是必不可少的,在这些应用中,必须限制自治代理的行为。仅根据动作序列来对协议建模的传统方法限制了代理执行协议的灵活性。相比之下,通过正式表示承诺,我们可以通过代理之间的承诺来指定协议的内容。在表示事件演算中的承诺时,我们将承诺操作和与领域无关的推理规则形式化为公理,以捕获承诺的演变。我们还提供了一种通过代理的行为指定协议特定公理的方法。这些公理使代理能够明确地推断其行为,以灵活地适应运行时可能出现的异常和机会。这种推理是使用事件演算计划器实现的,该计划器可以帮助确定遵循给定协议规范的灵活执行路径。

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